WO2019105141A1 - Rinsing bucket for flat mop - Google Patents
Rinsing bucket for flat mop Download PDFInfo
- Publication number
- WO2019105141A1 WO2019105141A1 PCT/CN2018/110475 CN2018110475W WO2019105141A1 WO 2019105141 A1 WO2019105141 A1 WO 2019105141A1 CN 2018110475 W CN2018110475 W CN 2018110475W WO 2019105141 A1 WO2019105141 A1 WO 2019105141A1
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- WIPO (PCT)
- Prior art keywords
- water
- zone
- flat mop
- sewage
- cleaning
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47L—DOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
- A47L13/00—Implements for cleaning floors, carpets, furniture, walls, or wall coverings
- A47L13/10—Scrubbing; Scouring; Cleaning; Polishing
- A47L13/50—Auxiliary implements
- A47L13/58—Wringers for scouring pads, mops, or the like, combined with buckets
Definitions
- the invention belongs to the technical field of cleaning equipment, and relates to a flat mop cleaning bucket.
- the cleaning bucket of the present invention is provided with a cleaning area, and the cleaning bucket completes the flat mop head by making the flat mop head perform a piston movement in the cleaning area.
- the elastic member of the present invention refers to any elastic mechanical structure including a spring.
- Flat mop is a very popular floor cleaning appliance in recent years.
- the mop head of this mop is a flat plate.
- the flatbed has a layer of mop. When using it, use the flat plate to press the mop to mop the floor. It is even, so the ground that is dragged by the flat mop is relatively clean.
- the more common flat mop cleaning device usually includes a mop bucket, and the structure of the cleaning mop is set in the mop bucket, but the cleaning is generated.
- the sewage can not be discharged in time, but it is retained in the mop bucket and mixed with the washing water and reused for the cleaning of the flat mop, thereby greatly reducing the cleaning effect of the flat mop.
- the technical problem to be solved by the present invention is that the cleaning effect of the existing flat mop cleaning tub on the flat mop is not good, and a flat mop cleaning bucket is provided for the problem.
- the flat mop cleaning bucket of the present invention comprises a washing zone, characterized in that the washing zone is provided with a sewage outlet and a purified water inlet connected with the water source, the sewage outlet is not connected with the water source, and the water source is set in the washing bucket.
- the water for the flat mop cleaning is from a water source, and the washing tub of the present invention is used in different occasions, the water source is a water purification zone disposed on the washing tub, and a part of the purified water can be stored for cleaning the flat mop. If necessary, the water in the purified water zone enters the washing zone through the clean water inlet of the washing zone, and after the flat mop is cleaned, the sewage is converted into sewage and discharged from the sewage outlet of the washing zone, and the sewage is not connected to the water source, and the sewage is not connected. It does not flow into the water source, that is, it does not contaminate the clean water used for the flat mop cleaning.
- the flat mop cleaning tub of the present invention ensures that the water cleaned by the flat mop each time is clean water from the clean water area.
- the water source may be any water supply device that supplies purified water, such as a tap water tap or a container containing clean water.
- the water source is a container containing clean water, which is convenient.
- the flat mop cleaning bucket of the present invention cleans the flat mop in various occasions.
- the washing tub further includes a buoyancy block for measuring a water level of the washing zone, and the purifying water inlet is provided with a water purifying valve or a purified water pump connected to the buoyancy block.
- the washing tub further includes a resisting piece that resists or catches the buoyancy block.
- the cleaning bucket further includes a connecting body connecting the buoyancy block and the water inlet valve, the connecting body comprising a fixing section and an active section movably connected to the fixing section, wherein the movable section is provided A card that resists or jams.
- the movable section is snapped or screwed to the fixed end.
- the cleaning zone includes a cleaning sleeve for the flat mop head to pass through, the cleaning sleeve having a pressing end and a first elasticity for pressing the pressing end toward the flat mop head
- the pressing end is connected with the resisting piece, and when the pressing end presses the flat mop head to press the first elastic member, the resisting piece abuts or catches the buoyancy block; when the pressing end is not squeezed
- the resisting piece does not abut or catch the buoyancy block.
- the washing tub further includes a control circuit and a water purifying water pump or a water purifying valve that communicates with the purified water inlet and the water source, and the control circuit is provided with a water level sensing end that senses the water level of the washing zone.
- the cleaning tub further includes a control circuit and a water purifying water pump or a water purifying valve that communicates with the purified water inlet and the water source, and the control circuit is provided with a timing module, and when the control circuit is opened, the timing is The module controls the working time of the water purification pump or the water purification valve.
- the water source includes a water purification zone that communicates with the purified water inlet through the water inlet conduit, the water purification zone is provided with a water outlet hole and a first sealing plug that seals the water outlet hole, One end of the water inlet pipe is provided with a top block passing through the water outlet hole, and the top block is provided with an opening communicating with the water inlet pipe, and the top block will be first sealed when the water purification zone is placed at the support position of the water purification zone The plug is opened from the water outlet hole and communicates with the water inlet pipe through the opening.
- the water purification zone further includes a sealing cavity disposed on the water outlet hole and a second elastic member in the sealing cavity, wherein the sealing cavity is provided with an active space for the first sealing plug to move.
- the first sealing plug is connected to the sealing cavity by a second elastic member, and the sealing cavity is provided with an opening that communicates the water purification zone with the water outlet hole.
- a sliding block is provided in the sealing cavity that matches the inner wall of the sealing cavity, and the sliding block is coupled to the first sealing plug.
- the cleaning zone includes a cleaning sleeve for passing the flat mop head, and the cleaning sleeve is provided with a pressing strip for pressing the flat mop head and rotatingly connected with the cleaning sleeve.
- the sewage outlet includes a first sewage outlet disposed on the extruded strip and/or a second sewage outlet disposed at a lower portion of the washing zone.
- the washing tub further includes a sewage valve that switches the second sewage outlet or a sewage water pump that extracts the sewage from the second sewage outlet, and the sewage valve includes a second sealing plug that blocks the sewage outlet.
- a sewage valve switch that is connected to the second sealing plug, and the transmission connection manner is one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection, and a link transmission connection.
- the washing tub further includes a control circuit coupled to the sewage valve or the sewage water pump.
- the sewage valve further includes a third elastic member that pushes the second sealing plug to block the sewage outlet.
- the water source includes a water purification zone
- the purified water zone is connected to the purified water inlet through the water inlet pipe
- the purified water zone is located above the washing zone
- the washing bucket is provided with supporting water purification
- the water purification zone support level of the district.
- FIG. 1 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 1;
- FIG. 2 is a schematic structural view of a cleaning area in a flat mop cleaning bucket according to Embodiment 1;
- Figure 3 is a schematic enlarged view of the circle of Figure 2;
- FIG. 4 is a schematic structural view showing a connection between a water purification zone and a water inlet pipe of a flat mop cleaning bucket according to Embodiment 1;
- FIG. 5 is a schematic structural view of a cleaning sleeve in a flat mop cleaning bucket according to Embodiment 1;
- FIG. 6 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 2;
- FIG. 7 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 3 and Embodiment 4;
- FIG. 8 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 5.
- the present invention provides a flat mop cleaning tub provided with a washing area for cleaning a flat mop, the washing area being provided with a purified water inlet for receiving purified water and discharging the cleaned sewage.
- the sewage outlet, the sewage outlet is not connected to the water source providing the purified water, so that the purified water entering the washing area through the purified water inlet is not polluted by the sewage, and the cleaning effect of the washing bucket on the flat mop is ensured.
- the amount of water that the ordinary water source enters the washing area is controlled by the consumer. To ensure a good cleaning effect, the required clean water volume in the washing area has a superior range, and the artificial control is relatively random, so that each cleaning is performed. The effect is different. Based on many technical problems encountered by consumers including the problem in the actual use of the cleaning bucket of the present invention, the present invention focuses on the following aspects of the cleaning bucket:
- the present invention adds a cleaning area water level control mechanism to the cleaning tank.
- the cleaning area water level control mechanism includes cleaning In the detection zone in the zone, the detection zone can effectively separate the touch of the flat mop on the detection zone during the process of inserting the flat mop into the cleaning zone for piston movement, and hinder the water level detection process, in order to achieve the above effect, the cleaning zone There is usually a movable panel that separates the detection zones.
- the detection zone is provided with a buoyancy block.
- the buoyancy block As the water purification in the cleaning zone is continuously added, the buoyancy block is then floated up, and the inlet valve for controlling the clean water flow of the purified water inlet is connected with the buoyancy block, and the floating of the buoyancy block will gradually close the water inlet.
- the valve is completely closed, so the water level of the flat mop is the same every time the cleaning area is cleaned.
- the buoyancy block is connected to the inlet valve through a connecting body, and the buoyancy block drives the inlet valve switch through the connecting body to adjust the inflow of the purified water into the cleaning zone
- the connecting body comprises a fixed section.
- the active section the active section is connected with the fixed section, so that the buoyancy block can be relatively adjusted to drive the effective driving distance of the inlet valve switch, so that the inlet valve is closed at different water levels.
- the movable segment is snapped or screwed to the fixed segment, and the two methods can conveniently adjust the effective driving distance more conveniently.
- the cleaning tub is provided with a resisting piece that resists or catches the buoyancy block, so that the water level in the washing area is repeatedly fluctuated during the cleaning process of the flat mop, and the influence on the buoyancy block is minimized.
- the resisting piece abuts or catches the buoyancy block through a card position and a low gear position disposed on the connecting body.
- the resisting piece can be manually moved to abut or catch the connecting body when the water level in the washing area reaches the height required for cleaning the flat mop, but in some embodiments of the present invention, the resisting piece passes through other structures.
- the cleaning zone includes a cleaning sleeve for the flat mop head to pass through, the cleaning sleeve is provided with a pressing end for pressing the flat mop head, and the first elastic member is coupled to the pressing end and is mounted on the flat mop When the head passes through the cleaning sleeve, the pressing end is pressed toward the flat mop head. The pressing end is connected with the resisting piece. When the pressing end presses the flat mop head to deform the first elastic piece by being squeezed from the flat mop head, the pressing end is the sliding end resisting piece or the engaging body.
- the first elastic member is restored to the relaxed state, and the resisting piece is driven to release by the pressing end, so that the buoyancy block is floated by the change of the water level in the washing area.
- the cleaning bucket includes a control circuit and a water purification pump or a water purification valve that connects the purified water inlet and the water source.
- the control circuit is provided with a water level sensing end for sensing the water level of the cleaning area, and the water level signal sent from the water level sensing end to the cleaning area is sent to the control circuit, and the water purification valve or the water purification water pump is controlled by the control circuit to adjust the water level of the cleaning area. Make sure the cleaning area cleans the flat mop.
- the control circuit turns on or off the water purification valve or the water purification water pump according to the signal of the water level sensing end, but in some embodiments of the present invention, the water level sensing end is not used in the flat plate.
- the control circuit is provided with a timing module.
- the timing module Start timing, after a certain time, automatically close the water purification valve or the water purification pump.
- the water source of the present invention is any water supply device for providing purified water, but in order to adapt to the use of the washing tub of the present invention in different occasions, the water source includes a water purification zone that communicates with the purified water inlet through the water inlet pipe, the net The water area is fixed on the cleaning bucket. After the clean water in the water purification zone is used up, the cleaning bucket of the present invention needs to be moved to the vicinity of the faucet to add water. The cleaning bucket usually has a certain weight, and the moving cleaning bucket requires a lot of physical strength. The use experience of the cleaning bucket of the present invention is reduced by the consumer.
- some embodiments of the present invention provide a water purification zone support position for supporting the water purification zone on the cleaning bucket, and the purified water zone can be freely purified from the purified water.
- the support level of the area is removed, and after the water is added, it can be repositioned in the support position of the water purification area.
- the water purification zone is provided with a water outlet hole and a first sealing plug that seals the water outlet hole, and the first sealing plug is removed when the water purification zone is lifted away from the water purification zone support position.
- the water outlet hole is used to prevent the clean water from leaking out of the water outlet when water is injected into the water purification zone.
- one end of the water inlet pipe is provided with a top block passing through the water outlet hole, and the top block is provided with an opening communicating with the water inlet pipe, and when the water purification zone is relocated in the water purification zone support When in position, the top block ejects the first sealing plug from the water outlet hole and communicates the water purification zone with the water inlet pipe through the opening, thereby smoothly inputting the purified water in the purified water zone into the cleaning zone.
- the first sealing plug can automatically plug the water outlet hole when the water purification zone is lifted off the cleaning bucket.
- a sealing cavity is arranged on the water outlet hole of the water purification zone.
- a second elastic member is disposed in the sealing cavity and an active space for the first sealing plug to move, the first sealing plug is connected to the sealing cavity by the second elastic member, when the water purification zone is placed at the support position of the water purification zone
- the top block of the water inlet pipe passes through the water outlet hole to resist the first sealing plug, and the second elastic member is deformed to disengage the first sealing plug from the water outlet hole, and when the water purification zone is lifted away from the water supply zone support position,
- the top block of the water pipe is pulled out from the water outlet hole, and the second elastic member resets the schematic sealing plug to re-plug the water outlet hole, thereby preventing new water in the water purification zone from leaking out of the water purification zone through the water outlet hole.
- a sewage outlet is specially provided on the cleaning zone for discharging the sewage in the cleaning zone, and the cleaning zone is generally provided with a cleaning sleeve for cleaning the flat mop head, the cleaning sleeve
- the mouth is provided with a squeeze bar for pressing the flat mop head and connected with the cleaning sleeve.
- the flat mop head is squeezed by the squeeze bar to clean the water during the cleaning, and the water generated by the extrusion can be directly injected into the cleaning area or can be discharged.
- those skilled in the art may not need to additionally add a sewage outlet.
- the cleaning zone may discharge part of the sewage through the squeeze bar.
- a sewage outlet is additionally provided in the washing zone for completely discharging the sewage in the washing zone.
- the cleaning zone includes a first sewage outlet disposed on the extruded strip, and in some embodiments of the invention, the cleaning zone includes a lower portion of the cleaning zone.
- the second sewage outlet in some embodiments of the present invention, the washing zone includes a first sewage outlet disposed on the extruded strip and a second sewage outlet disposed at a lower portion of the washing zone.
- the first sewage outlet can discharge the sewage by itself with the piston cleaning movement of the flat mop in the cleaning area
- the second sewage outlet is provided with a sewage valve or a sewage water pump for controlling the discharge of the sewage, and the sewage valve includes blocking the second sewage.
- the second sealing plug of the outlet and the sewage valve switch for connecting the second sealing plug may be one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection and a link transmission connection.
- the sewage valve further includes a sewage valve that pushes the second sealing plug to block the second sewage outlet. If the sewage valve is opened, the second sealing plug can automatically block the second sewage outlet.
- the washing tub further includes a control circuit connected to the sewage valve or the sewage water pump, and the control circuit can simultaneously control the water purifying water pump or the water purifying valve, thereby realizing the function of automatically changing the water in the washing area.
- a flat mop cleaning bucket comprises a barrel body 1, a washing zone 10, a water purification zone 3 and a sewage zone 2, wherein the washing zone 10 and the water purification zone 3 are connected by a water inlet pipe 6, and the barrel body 1 is provided with supporting water purification
- the water purification zone of the zone 3 is supported by a support 4, which may be a support seat located at the bottom of the barrel 1 as described in this embodiment, or may be provided at the mouth or inner wall of the barrel to support the weight of the entire clean water zone 3
- the support structure which is conventional to those skilled in the art, can be used as a support.
- the cleaning zone 10 is provided with a purified water inlet connected to the water inlet pipe 6 and a sewage outlet for discharging the sewage in the cleaning zone 10.
- the purified water inlet is provided with a water purification valve 25 for controlling the inflow of the purified water into the cleaning zone 10.
- the buoyancy block 8 is disposed in the cleaning zone 10, and the buoyancy block 8 is connected to the water purifying valve 25 through the connecting body 9, whereby the floating block 8 floats up and down in the washing zone 10 to control the switch closing of the water purifying valve 25. In order to control the flow of clean water into the washing zone 10.
- the connecting body 9 includes a fixed section 11 connected to the buoyancy block 8 and a movable section 12 connected to the water purifying valve 25.
- the fixed section 11 is provided with a threaded sleeve 13 at one end, and the movable section 12 is provided with a threaded fit with the threaded sleeve 13.
- the threaded column 14 can adjust the relative position of the fixed section 11 and the movable section 12 by screwing, thereby adjusting the maximum water level allowed by the washing zone 10.
- the cleaning area 10 further includes a cleaning sleeve 5 at the top of the cleaning area 10, the cleaning sleeve 5 is inserted or removed when the flat mop head 7 is cleaned, and the cleaning sleeve 5 is provided with a squeeze for cleaning the flat mop head 7 a strip 28, a pressing end, a resisting piece 15, a rotating rod 16 connecting the pressing end and the resisting piece 15, and a first spring 17 connected to the pressing end.
- the pressing end is a pressing roller 18, the pressing bar 28 and the pressing roller 18 constitute a pressing of the flat mop head 7, after the flat mop head 7 is inserted into the cleaning sleeve 5, the pressing roller 18 is pressed under the compression of the first spring 17, and pushed The rotating rod 16 rotates, thereby causing the resisting piece 15 to catch the threaded groove in the threaded column 14 of the movable section 12. At this time, since the resisting piece 15 is caught, the floating block 8 does not occur with the fluctuation of the water level of the washing area 10. Shaking up and down, thereby affecting the normal switching adjustment of the water purification valve 25.
- the first spring 17 pushes the pressing roller 18 to reset, and drives the resisting piece 15 through the rotating rod 16 to dial from the thread groove in the threaded column 14 of the movable section 12. Out, thereby restoring the control of the floating level of the cleaning zone 10 to the floating block 8.
- a water outlet hole 26 is provided at the junction of the bottom of the water purification zone 10 and the water inlet pipe 6, and the water purification zone 10 is provided with a sealing cavity 20, a second spring 22, and a first sealing plug movable in the sealing cavity 20 at the water outlet hole 26.
- the second spring 22 has one end against the top of the sealing cavity 20, and the other end is abutted against the first sealing plug 24 by the sliding block 23, and the sliding block 23 is matched with the sealing cavity 20, thereby ensuring that the first sealing plug 24 can be accurately
- the water outlet hole 26 is plugged, and the water inlet pipe 6 is connected to the water purification zone.
- the top block 19 is provided with a top block 19 for inserting the water outlet hole 26 and the first sealing plug 24 is ejected from the water outlet hole 26, and the top block 19 is provided with The water pipe opening 27, the sealing cavity 20 is provided with an opening 21, and when the top block 19 ejects the first sealing plug 24 from the water outlet hole 26, the purified water in the water purification zone 3 can pass through the opening 21 and the water inlet pipe opening 27 It flows into the water inlet pipe 6 and finally enters the washing zone 10.
- the cleaning zone 10 in the cleaning bucket of the embodiment is provided with a first sewage outlet 30, the first sewage outlet is located on the side of the cleaning sleeve 5, and the pressing bar 28 is pressed against the flat mop head 7 each time it is cleaned.
- the cleaned, squeezed sewage is discharged from the first sewage outlet 30 into the sewage zone 2 via the baffle 29 on the extruded strip 28.
- the flat mop cleaning bucket of the embodiment 2 is substantially the same as the first embodiment.
- the cleaning bucket includes the tub 30, the washing zone 33, the water purification zone 31, and the sewage zone 32, and the water purification zone 31 passes.
- the connecting passage 34 communicates with the washing zone 33, and the connecting passage 34 has rigidity, so that the water purifying zone 31 can be supported.
- the washing zone 33 has a first sewage outlet according to the first embodiment, and a lower portion of the washing zone 33.
- the second sewage outlet 37, the clean water inlet 33 and the second sewage outlet 37 of the washing area 33 are respectively provided with a water purifying valve 38 and a sewage valve 36, and the sewage in the washing area 33 can be discharged to the sewage area through the first sewage outlet when the flat mop head is cleaned. Within 32, after the end of the cleaning, it can be discharged into the sewage zone 32 through the second sewage outlet 37.
- the water purification valve 38 and the sewage valve 36 are all connected with the linkage rod 35 through a gear transmission, and the rotation linkage rod 35 can simultaneously control the water purification valve 38 and the sewage valve 36, for example, when the water needs to be injected into the cleaning area 33,
- the moving rod 35 opens the water purifying valve 38 and the sewage valve 36 is closed.
- the interlocking rod 35 is rotated to close the water purifying valve 38 and the sewage valve is opened.
- the water purification zone 33 is located above the cleaning zone 33 as in the first embodiment, so that the purified water in the water purification zone 33 can automatically flow into the cleaning zone 33, so that it is not necessary to provide clean water to the clean water.
- the power of the water zone 31 flowing to the washing zone 33 is ensured that the water level in the water purification zone 31 is higher than the water level of the washing zone 33.
- a water injection port 39 is also provided at the top of the water purification zone 31. After the water injection is completed, the water injection port 39 is plugged. Under the premise that the water purification valve 38 is opened, the purified water in the water purification zone 31 can also be automatically flowed into the cleaning zone 33.
- the flat mop cleaning bucket of the embodiment is substantially the same as the first embodiment.
- the cleaning bucket of the embodiment also includes a tub 40, and the tub 40 is separated by a partition 50 into a clean water zone 46 and sewage.
- the cleaning zone 43 is disposed in the sewage zone 41 through the cleaning zone support 42 to facilitate the discharge of the sewage by the cleaning zone 43.
- the cleaning zone 43 communicates with the water purification zone 46 through the water purification water pump 47.
- One end of the water purification water pump 47 communicates with the bottom of the water purification zone 46 through the water suction pipe 45, and the other end communicates with the cleaning zone 43 through the drainage pipe 44.
- the washing tub further includes a control circuit 49 and a control circuit switch 48, and the control circuit 49 is connected to the purified water pump 47 so that the switch of the water purifying water pump 47 can be controlled.
- the cleaning zone 43 of the embodiment is also provided with a cleaning sleeve 51, and the first sewage outlet is provided on the cleaning sleeve 51, which are consistent with the embodiment 1, and the flat mop head is cleaned when cleaning the cleaning sleeve 51.
- the sewage is discharged to the sewage area 41 through the first sewage outlet, and the timely replenishment of the cleaning area 43 is completed by the purified water pump 47.
- the control circuit 49 is provided with a timing module for timing the working time of the purified water pump 47, ensuring that each time the net is utilized. The amount of purified water delivered by the water pump 47 to the washing zone 43 is the same.
- the cleaning bucket of the embodiment is identical to that of the third embodiment, and the difference is that the water level sensing end of the control circuit is disposed in the cleaning area 43 in the embodiment, and the control circuit 49 controls the water purification pump 47 through the signal of the water level sensing end.
- the working time ensures that the amount of purified water delivered to the washing zone 43 by the water purifying water pump 47 can be automatically adjusted according to the water level of the washing zone. Under the action of the water level sensing end, those skilled in the art can discard the timing module of the third embodiment.
- any sensor that measures the water level known to those skilled in the art can be used as the water level sensing end of the present embodiment and produces similar technical effects. Further, due to the action of the water purification water pump 47, the position of the water purification zone 46 can be arbitrarily set, and is not limited.
- the cleaning bucket of the embodiment is substantially the same as the embodiment 3, and includes a barrel 60.
- the partition 63 divides the barrel 60 into a water purification zone 65 and a sewage zone 61.
- the cleaning zone 62 is disposed in the sewage zone 61, and the cleaning zone 62 A clean water inlet 66 is provided.
- the water storage container 64 is filled with water in the water purification area 65, and then poured into the clean water inlet 66 to inject water into the washing area 62.
- the present invention exemplifies several typical cleaning buckets in the embodiment section.
- those skilled in the art can selectively use water pumps and/or valves in controlling the water inlet and outlet water in the cleaning zone, and the control circuit can be used extremely.
- the increase in the degree of intelligence of the influent and effluent of the washing zone is greatly increased.
- the mechanical control of the influent and effluent of the washing zone can still bring about a good control effect.
- the invention adopts one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection and a link transmission connection in mechanically controlling the water inlet and outlet of the cleaning zone, and those skilled in the art can according to various mechanical structures.
- the selection of a suitable transmission method will give consumers a good control experience on the influent and effluent of the cleaning area.
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Abstract
Description
本发明属于清洁设备技术领域,涉及一种平板拖把清洗桶,本发明所述清洗桶设有清洗区,所述清洗桶通过使平板拖把头在清洗区内做活塞式运动完成对平板拖把头的清洗,本发明所述的弹性件指包括弹簧在内的任何具有弹性的机械结构。The invention belongs to the technical field of cleaning equipment, and relates to a flat mop cleaning bucket. The cleaning bucket of the present invention is provided with a cleaning area, and the cleaning bucket completes the flat mop head by making the flat mop head perform a piston movement in the cleaning area. Cleaning, the elastic member of the present invention refers to any elastic mechanical structure including a spring.
平板拖把是近些年来非常流行的一款地板清洁用具,该类拖把的拖把头是一个平板,平板上设有一层拖布,使用时,利用平板压住拖布在地板上拖地,由于受力较为均匀,因此经平板拖把拖过的地较为干净。Flat mop is a very popular floor cleaning appliance in recent years. The mop head of this mop is a flat plate. The flatbed has a layer of mop. When using it, use the flat plate to press the mop to mop the floor. It is even, so the ground that is dragged by the flat mop is relatively clean.
平板拖把虽然具有良好的拖地效果,但拖布比较容易脏,往往需要经常清洗,目前比较常见的平板拖把清洗装置通常包括一个拖把桶,在拖把桶内设置清洗拖布的结构,但清洗后产生的污水无法及时排出,而滞留在拖把桶内并与清洗用水混合后重新用于平板拖把的清洗,从而极大的降低的平板拖把的清洗效果。Although the flat mop has a good mopping effect, the mop is relatively easy to be dirty and often needs to be cleaned frequently. At present, the more common flat mop cleaning device usually includes a mop bucket, and the structure of the cleaning mop is set in the mop bucket, but the cleaning is generated. The sewage can not be discharged in time, but it is retained in the mop bucket and mixed with the washing water and reused for the cleaning of the flat mop, thereby greatly reducing the cleaning effect of the flat mop.
发明内容Summary of the invention
本发明所要解决的技术问题在于现有平板拖把清洗桶对平板拖把的清洗效果不佳,并针对该问题提供一种平板拖把清洗桶。The technical problem to be solved by the present invention is that the cleaning effect of the existing flat mop cleaning tub on the flat mop is not good, and a flat mop cleaning bucket is provided for the problem.
本发明所述平板拖把清洗桶,包括清洗区,其特征在于所述清洗区设有污水出口以及与水源连通的净水进口,所述污水出口与水源不连通,所述水源为设置在清洗桶上的净水区。The flat mop cleaning bucket of the present invention comprises a washing zone, characterized in that the washing zone is provided with a sewage outlet and a purified water inlet connected with the water source, the sewage outlet is not connected with the water source, and the water source is set in the washing bucket. The water purification area on the.
所述用于平板拖把清洗的水来自水源,为了适应在不同的场合使用本发明所述清洗桶,所述水源为设置在清洗桶上的净水区,能够储存一部分净水用于清洗平板拖把所需,所述净水区中的水通过清洗区的净水进口进入清洗区,平板拖把清洗后,转化成污水从清洗区的污水出口排出,由于污水出口与水源并不连通,所述污水不会流入水源中,也即不会污染用于平板拖把清洗的净水,本发明所述平板拖把清洗桶确保每次对平板拖把清洗的水均为来自净水区的净水。The water for the flat mop cleaning is from a water source, and the washing tub of the present invention is used in different occasions, the water source is a water purification zone disposed on the washing tub, and a part of the purified water can be stored for cleaning the flat mop. If necessary, the water in the purified water zone enters the washing zone through the clean water inlet of the washing zone, and after the flat mop is cleaned, the sewage is converted into sewage and discharged from the sewage outlet of the washing zone, and the sewage is not connected to the water source, and the sewage is not connected. It does not flow into the water source, that is, it does not contaminate the clean water used for the flat mop cleaning. The flat mop cleaning tub of the present invention ensures that the water cleaned by the flat mop each time is clean water from the clean water area.
在本发明中,所述水源可以是一切提供净水的供水装置,例如自来水龙头或者盛放有净水的容器,在一般的情况下,所述水源为盛放有净水的容器,这样便于本发明所述平板拖把清洗桶在各种场合清洗平板拖把。In the present invention, the water source may be any water supply device that supplies purified water, such as a tap water tap or a container containing clean water. In general, the water source is a container containing clean water, which is convenient. The flat mop cleaning bucket of the present invention cleans the flat mop in various occasions.
在本发明的部分实施例中,所述清洗桶还包括测量清洗区水位的浮力块,所述净水进口设有与浮力块传动连接的净水阀门或净水水泵。In some embodiments of the present invention, the washing tub further includes a buoyancy block for measuring a water level of the washing zone, and the purifying water inlet is provided with a water purifying valve or a purified water pump connected to the buoyancy block.
在本发明的部分实施例中,所述清洗桶还包括抵住或卡住浮力块的抵挡片。In some embodiments of the invention, the washing tub further includes a resisting piece that resists or catches the buoyancy block.
在本发明的部分实施例中,所述清洗桶还包括连接浮力块及进水阀门的连接体,所述连接体包括固定段以及与固定段活动连接的活动段,所述活动段设有供抵挡片抵住或卡住的卡位。In some embodiments of the present invention, the cleaning bucket further includes a connecting body connecting the buoyancy block and the water inlet valve, the connecting body comprising a fixing section and an active section movably connected to the fixing section, wherein the movable section is provided A card that resists or jams.
在本发明的部分实施例中,所述活动段与固定端卡接或者螺纹连接。In some embodiments of the invention, the movable section is snapped or screwed to the fixed end.
在本发明的部分实施例中,所述清洗区包括供平板拖把头穿过的清洗套口,所述清洗套口设有挤压端以及将挤压端向平板拖把头挤压的第一弹性件,所述挤压端与抵挡片连接,当挤压端挤压平板拖把头使第一弹性件受到挤压时,所述抵挡片抵住或卡住浮力块;当挤压端未挤压平板拖把头使第一弹性件处于松弛状态时,所述抵挡片未抵住或卡住浮力块。In some embodiments of the present invention, the cleaning zone includes a cleaning sleeve for the flat mop head to pass through, the cleaning sleeve having a pressing end and a first elasticity for pressing the pressing end toward the flat mop head The pressing end is connected with the resisting piece, and when the pressing end presses the flat mop head to press the first elastic member, the resisting piece abuts or catches the buoyancy block; when the pressing end is not squeezed When the flat mop head causes the first elastic member to be in a relaxed state, the resisting piece does not abut or catch the buoyancy block.
在本发明的部分实施例中,所述清洗桶还包括控制电路以及连通净水进口和水源的净水水泵或净水阀门,所述控制电路设有感应清洗区水位的水位感应端。In some embodiments of the present invention, the washing tub further includes a control circuit and a water purifying water pump or a water purifying valve that communicates with the purified water inlet and the water source, and the control circuit is provided with a water level sensing end that senses the water level of the washing zone.
在本发明的部分实施例中,所述清洗桶还包括控制电路以及连通净水进口和水源的净水水泵或净水阀门,所述控制电路设有计时模块,当打开控制电路后,由计时模块控制净水水泵或净水阀门的工作时间。In some embodiments of the present invention, the cleaning tub further includes a control circuit and a water purifying water pump or a water purifying valve that communicates with the purified water inlet and the water source, and the control circuit is provided with a timing module, and when the control circuit is opened, the timing is The module controls the working time of the water purification pump or the water purification valve.
在本发明的部分实施例中,所述水源包括通过进水管道与净水进口连通的净水区,所述净水区设有出水孔以及密封塞住出水孔的第一密封塞,所述进水管道一端设有穿过出水孔的顶块,所述顶块上设有连通进水管道的开口,当净水区放置在净水区支撑位上时,所述顶块将第一密封塞从出水孔上顶开并通过开口将净水区与进水管道连通。In some embodiments of the present invention, the water source includes a water purification zone that communicates with the purified water inlet through the water inlet conduit, the water purification zone is provided with a water outlet hole and a first sealing plug that seals the water outlet hole, One end of the water inlet pipe is provided with a top block passing through the water outlet hole, and the top block is provided with an opening communicating with the water inlet pipe, and the top block will be first sealed when the water purification zone is placed at the support position of the water purification zone The plug is opened from the water outlet hole and communicates with the water inlet pipe through the opening.
在本发明的部分实施例中,所述净水区还包括设置在出水孔上的密封腔以及密封腔内的第二弹性件,所述密封腔内设有供第一密封塞活动的活动空间,所述第一密封塞通过第二弹性件与密封腔连接,所述密封腔设有将净水区与出水孔连通的开口。In some embodiments of the present invention, the water purification zone further includes a sealing cavity disposed on the water outlet hole and a second elastic member in the sealing cavity, wherein the sealing cavity is provided with an active space for the first sealing plug to move. The first sealing plug is connected to the sealing cavity by a second elastic member, and the sealing cavity is provided with an opening that communicates the water purification zone with the water outlet hole.
在本发明的部分实施例中,所述密封腔内设有与密封腔内壁匹配的滑动块,所述滑动块与第一密封塞连接。In some embodiments of the invention, a sliding block is provided in the sealing cavity that matches the inner wall of the sealing cavity, and the sliding block is coupled to the first sealing plug.
在本发明的部分实施例中,所述清洗区包括设有供平板拖把头穿过的清洗套口,所述清洗套口上设有挤压平板拖把头并与清洗套口转动连接的挤压条,所述污水出口包括设置在挤压条上第一污水出口和/或设置在清洗区下部的第二污水出口。In some embodiments of the present invention, the cleaning zone includes a cleaning sleeve for passing the flat mop head, and the cleaning sleeve is provided with a pressing strip for pressing the flat mop head and rotatingly connected with the cleaning sleeve. The sewage outlet includes a first sewage outlet disposed on the extruded strip and/or a second sewage outlet disposed at a lower portion of the washing zone.
在本发明的部分实施例中,所述清洗桶还包括开关第二污水出口的污水阀门或将污水从第二污水出口抽出的污水水泵,所述污水阀门包括堵住污水出口的第二密封塞以及传动连接第二密封塞的污水阀门开关,所述传动连接方式为螺纹传动连接、齿轮传动连接、轴传动连接、连杆传动连接中的一种或多种。In some embodiments of the present invention, the washing tub further includes a sewage valve that switches the second sewage outlet or a sewage water pump that extracts the sewage from the second sewage outlet, and the sewage valve includes a second sealing plug that blocks the sewage outlet. And a sewage valve switch that is connected to the second sealing plug, and the transmission connection manner is one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection, and a link transmission connection.
在本发明的部分实施例中,所述清洗桶还包括与污水阀门或污水水泵连接的控制电路。In some embodiments of the invention, the washing tub further includes a control circuit coupled to the sewage valve or the sewage water pump.
在本发明的部分实施例中,所述污水阀门还包括推动第二密封塞堵住污水出口的第三弹性件。In some embodiments of the invention, the sewage valve further includes a third elastic member that pushes the second sealing plug to block the sewage outlet.
在本发明的部分实施例中,所述水源包括净水区,所述净水区通过进水管道连通净水进口,所述净水区位于清洗区上方,所述清洗桶设有支撑净水区的净水区支撑位。In some embodiments of the present invention, the water source includes a water purification zone, the purified water zone is connected to the purified water inlet through the water inlet pipe, the purified water zone is located above the washing zone, and the washing bucket is provided with supporting water purification The water purification zone support level of the district.
图1是实施例1所述一种平板拖把清洗桶的结构示意图;1 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 1;
图2是实施例1所述一种平板拖把清洗桶中清洗区的结构示意图;2 is a schematic structural view of a cleaning area in a flat mop cleaning bucket according to Embodiment 1;
图3是图2画圈处的放大结构示意图;Figure 3 is a schematic enlarged view of the circle of Figure 2;
图4是实施例1所述一种平板拖把清洗桶净水区与进水管道连接处的结构示意图;4 is a schematic structural view showing a connection between a water purification zone and a water inlet pipe of a flat mop cleaning bucket according to Embodiment 1;
图5是实施例1所述一种平板拖把清洗桶中清洗套口的结构示意图;5 is a schematic structural view of a cleaning sleeve in a flat mop cleaning bucket according to Embodiment 1;
图6是实施例2所述一种平板拖把清洗桶的结构示意图;6 is a schematic structural view of a flat mop cleaning bucket according to
图7是实施例3、实施例4所述一种平板拖把清洗桶的结构示意图;7 is a schematic structural view of a flat mop cleaning bucket according to
图8是实施例5所述一种平板拖把清洗桶的结构示意图。8 is a schematic structural view of a flat mop cleaning bucket according to Embodiment 5.
本具体实施方式是对发明内容部分的详细说明。This detailed description is a detailed description of the content of the invention.
如发明内容部分所述,本发明提供了一种平板拖把清洗桶,所述清洗桶设有用于清洗平板拖把的的清洗区,清洗区设有接收净水的净水进口以及排出清洗后污水的污水出口,污水出口与提供净水的水源并不连通,从而通过净水进口进入清洗区的净水不会被污水污染,确保所述清洗桶对平板拖把的清洗效果。As described in the Summary of the Invention, the present invention provides a flat mop cleaning tub provided with a washing area for cleaning a flat mop, the washing area being provided with a purified water inlet for receiving purified water and discharging the cleaned sewage. The sewage outlet, the sewage outlet is not connected to the water source providing the purified water, so that the purified water entering the washing area through the purified water inlet is not polluted by the sewage, and the cleaning effect of the washing bucket on the flat mop is ensured.
普通的水源进入清洗区的水量由消费者人为控制,为确保良好的清洗效果,清洗区每次所需的净水量均有较优的范围,而人为控制又比较随意,使得每次的清洗效果好坏不一,基于包括此问题在内的消费者在实际使用本发明所述清洗桶而遇到的诸多技术问题,本发明着重对所述清洗桶进行了以下几个方面的改进:The amount of water that the ordinary water source enters the washing area is controlled by the consumer. To ensure a good cleaning effect, the required clean water volume in the washing area has a superior range, and the artificial control is relatively random, so that each cleaning is performed. The effect is different. Based on many technical problems encountered by consumers including the problem in the actual use of the cleaning bucket of the present invention, the present invention focuses on the following aspects of the cleaning bucket:
一、清洗区净水加水量控制方面的一种改进1. An improvement in the control of clean water and water in the cleaning area
为准确控制清洗区清洗平板拖把的所需的净水量,本发明为所述清洗桶增设了清洗区水位控制机构,在本发明的部分实施例中,所述清洗区水位控制机构包括位于清洗区内的检测区,该检测区在平板拖把插入清洗区做活塞式运动的过程中能够有效的隔开平板拖把对检测区的碰触,妨碍水位检测过程,为实现上述效果,所述清洗区通常设有隔开检测区的活动板。所述检测区设有浮力块,随着清洗区净水的不断加入,浮力块随之上浮,控制净水进口净水流量的进水阀门与浮力块连接,浮力块的上浮将逐渐关闭进水阀门,直至完全关闭,因此,清洗区每次对平板拖把进行清洗的水位都是相同的。In order to accurately control the required amount of clean water for cleaning the flat mop in the cleaning area, the present invention adds a cleaning area water level control mechanism to the cleaning tank. In some embodiments of the present invention, the cleaning area water level control mechanism includes cleaning In the detection zone in the zone, the detection zone can effectively separate the touch of the flat mop on the detection zone during the process of inserting the flat mop into the cleaning zone for piston movement, and hinder the water level detection process, in order to achieve the above effect, the cleaning zone There is usually a movable panel that separates the detection zones. The detection zone is provided with a buoyancy block. As the water purification in the cleaning zone is continuously added, the buoyancy block is then floated up, and the inlet valve for controlling the clean water flow of the purified water inlet is connected with the buoyancy block, and the floating of the buoyancy block will gradually close the water inlet. The valve is completely closed, so the water level of the flat mop is the same every time the cleaning area is cleaned.
在本发明的部分实施例中,所述浮力块与进水阀门通过连接体连接,浮力块通过连接体带动进水阀门开关,调节净水流入清洗区的流入量,所述连接体包括固定段以及活动段,活动段与固定段活动连接,从而可相对调节浮力块带动进水阀门开关的有效带动距离,这样,在不同的水位下实现进水阀门的闭合。所述活动段与固定段卡接或螺纹连接,这两种方式均可较方便的快速调整所述有效带动距离。In some embodiments of the present invention, the buoyancy block is connected to the inlet valve through a connecting body, and the buoyancy block drives the inlet valve switch through the connecting body to adjust the inflow of the purified water into the cleaning zone, and the connecting body comprises a fixed section. And the active section, the active section is connected with the fixed section, so that the buoyancy block can be relatively adjusted to drive the effective driving distance of the inlet valve switch, so that the inlet valve is closed at different water levels. The movable segment is snapped or screwed to the fixed segment, and the two methods can conveniently adjust the effective driving distance more conveniently.
在本发明的部分实施例中,所述清洗桶设有抵住或卡住浮力块的抵挡片,使清洗区水位在平板拖把清洗过程中的反复波动,对浮力块的影响降到最低。所述抵挡片通过设置在连接体上的卡位及低档位抵住或卡住浮力块。In some embodiments of the present invention, the cleaning tub is provided with a resisting piece that resists or catches the buoyancy block, so that the water level in the washing area is repeatedly fluctuated during the cleaning process of the flat mop, and the influence on the buoyancy block is minimized. The resisting piece abuts or catches the buoyancy block through a card position and a low gear position disposed on the connecting body.
通常抵挡片可以在清洗区水位达到清洗平板拖把所要求的高度时,用手拨动,使其抵住或者卡住连接体,但在本发明的部分实施例中,所述抵挡片通过 其他结构拨动:Generally, the resisting piece can be manually moved to abut or catch the connecting body when the water level in the washing area reaches the height required for cleaning the flat mop, but in some embodiments of the present invention, the resisting piece passes through other structures. Toggle:
在这些实施例中,清洗区包括供平板拖把头穿过的清洗套口,所述清洗套口设有挤压平板拖把头的挤压端,第一弹性件与挤压端连接并在平板拖把头穿过清洗套口时,将挤压端向平板拖把头挤压。挤压端与抵挡片连接,当挤压端挤压平板拖把头使第一弹性件受到来自平板拖把头的挤压而发生形变时,挤压端即拨动抵挡片抵住或卡住连接体,而平板拖把头从清洗套口拔出后,第一弹性件恢复放松状态,通过挤压端带动抵挡片松开,使浮力块重新受清洗区水位的变化而浮动。In these embodiments, the cleaning zone includes a cleaning sleeve for the flat mop head to pass through, the cleaning sleeve is provided with a pressing end for pressing the flat mop head, and the first elastic member is coupled to the pressing end and is mounted on the flat mop When the head passes through the cleaning sleeve, the pressing end is pressed toward the flat mop head. The pressing end is connected with the resisting piece. When the pressing end presses the flat mop head to deform the first elastic piece by being squeezed from the flat mop head, the pressing end is the sliding end resisting piece or the engaging body. After the flat mop head is pulled out from the cleaning sleeve, the first elastic member is restored to the relaxed state, and the resisting piece is driven to release by the pressing end, so that the buoyancy block is floated by the change of the water level in the washing area.
二、清洗区净水加水量控制方面的另一种改进Second, another improvement in the control of clean water and water in the cleaning area
本发明的部分实施例提供了另一种实现清水区净水加水量的控制方式,在这些实施例中,所述清洗桶包括控制电路以及连通净水进口和水源的净水水泵或净水阀门,所述控制电路设有感应清洗区水位的水位感应端,从水位感应端感应到清洗区水位信号发送至控制电路,并由控制电路控制净水阀门或净水水泵,以调整清洗区水位,确保清洗区清洗平板拖把的需要。Some embodiments of the present invention provide another control method for realizing the water purification amount of the clean water area. In these embodiments, the cleaning bucket includes a control circuit and a water purification pump or a water purification valve that connects the purified water inlet and the water source. The control circuit is provided with a water level sensing end for sensing the water level of the cleaning area, and the water level signal sent from the water level sensing end to the cleaning area is sent to the control circuit, and the water purification valve or the water purification water pump is controlled by the control circuit to adjust the water level of the cleaning area. Make sure the cleaning area cleans the flat mop.
在上述实施例中,所述控制电路是依据水位感应端的信号,开启或关闭所述净水阀门或者净水水泵,但在本发明的部分实施例中并没有使用所述水位感应端,在平板拖把清洗完毕后,完全排空清洗区内的污水,然后通过控制电路控制净水阀门或者净水水泵开关,控制电路设有计时模块,在控制电路打开净水阀门或净水水泵时,计时模块开始计时,在一定时间之后,自动关闭净水阀门或者净水水泵。In the above embodiment, the control circuit turns on or off the water purification valve or the water purification water pump according to the signal of the water level sensing end, but in some embodiments of the present invention, the water level sensing end is not used in the flat plate. After the mop is cleaned, completely drain the sewage in the cleaning area, and then control the water purifying valve or the clean water pump switch through the control circuit. The control circuit is provided with a timing module. When the control circuit opens the water purifying valve or the purified water pump, the timing module Start timing, after a certain time, automatically close the water purification valve or the water purification pump.
三、净水区与清洗桶固定方式的改进Third, the improvement of the water purification zone and the cleaning bucket fixing method
本发明所述水源为提供净水的任何供水装置,但为了适应在不同的场合使用本发明所述清洗桶,所述水源包括通过进水管道与净水进口连通的净水区,所述净水区固定在清洗桶上,净水区中的净水用完后,需要将本发明所述清洗桶移动至水龙头附近加水,清洗桶通常具有一定的重量,移动清洗桶需要花费大量的体力而降低消费者使用本发明所述清洗桶的使用体验,因此,本发明的部分实施例在所述清洗桶上设置了支撑净水区的净水区支撑位,净水区可以自由的从净水区支撑位上提走,加完水后又可以重新放置在净水区支撑位上。The water source of the present invention is any water supply device for providing purified water, but in order to adapt to the use of the washing tub of the present invention in different occasions, the water source includes a water purification zone that communicates with the purified water inlet through the water inlet pipe, the net The water area is fixed on the cleaning bucket. After the clean water in the water purification zone is used up, the cleaning bucket of the present invention needs to be moved to the vicinity of the faucet to add water. The cleaning bucket usually has a certain weight, and the moving cleaning bucket requires a lot of physical strength. The use experience of the cleaning bucket of the present invention is reduced by the consumer. Therefore, some embodiments of the present invention provide a water purification zone support position for supporting the water purification zone on the cleaning bucket, and the purified water zone can be freely purified from the purified water. The support level of the area is removed, and after the water is added, it can be repositioned in the support position of the water purification area.
在本发明的部分实施例中,所述净水区设有出水孔以及密封塞住出水孔的第一密封塞,在净水区提离净水区支撑位时,所述第一密封塞塞住所述出水孔,在向净水区注水时,可防止净水从出水孔漏出。在本发明的部分实施例中,所述进水管道一端设有穿过出水孔的顶块,所述顶块上设有连通进水管道的开口,当净水区重新放置在净水区支撑位上时,所述顶块将第一密封塞从出水孔上顶出并通过开口将净水区与进水管道连通,从而顺利的将净水区中净水输入清洗区中。In some embodiments of the present invention, the water purification zone is provided with a water outlet hole and a first sealing plug that seals the water outlet hole, and the first sealing plug is removed when the water purification zone is lifted away from the water purification zone support position. The water outlet hole is used to prevent the clean water from leaking out of the water outlet when water is injected into the water purification zone. In some embodiments of the present invention, one end of the water inlet pipe is provided with a top block passing through the water outlet hole, and the top block is provided with an opening communicating with the water inlet pipe, and when the water purification zone is relocated in the water purification zone support When in position, the top block ejects the first sealing plug from the water outlet hole and communicates the water purification zone with the water inlet pipe through the opening, thereby smoothly inputting the purified water in the purified water zone into the cleaning zone.
在本发明的部分实施例中,所述第一密封塞在净水区提离清洗桶时,可自动将出水孔塞住,这部分实施例在净水区的出水孔上设置密封腔,所述密封腔内设有第二弹性件以及供第一密封塞活动的活动空间,所述第一密封塞通过第二弹性件与密封腔连接,当净水区放置在净水区支撑位上时,所述进水管道的顶块穿过出水孔顶住第一密封塞,第二弹性件发生形变使第一密封塞脱离出水 孔,而当净水区提离净水区支撑位时,进水管道的顶块从出水孔中拔出,第二弹性件使示意密封塞复位,重新塞住出水孔,防止净水区新进净水通过出水孔从净水区漏出。In some embodiments of the present invention, the first sealing plug can automatically plug the water outlet hole when the water purification zone is lifted off the cleaning bucket. In this embodiment, a sealing cavity is arranged on the water outlet hole of the water purification zone. a second elastic member is disposed in the sealing cavity and an active space for the first sealing plug to move, the first sealing plug is connected to the sealing cavity by the second elastic member, when the water purification zone is placed at the support position of the water purification zone The top block of the water inlet pipe passes through the water outlet hole to resist the first sealing plug, and the second elastic member is deformed to disengage the first sealing plug from the water outlet hole, and when the water purification zone is lifted away from the water supply zone support position, The top block of the water pipe is pulled out from the water outlet hole, and the second elastic member resets the schematic sealing plug to re-plug the water outlet hole, thereby preventing new water in the water purification zone from leaking out of the water purification zone through the water outlet hole.
四、清洗区排污与清洗区净水进入的联动性改进4. Linkage improvement of sewage in cleaning area and clean water in cleaning area
本发明部分实施例所述清洗桶中的清洗区,在清洗区上专门设置污水出口用于排出清洗区中的污水,清洗区一般设有供平板拖把头清洗的清洗套口,所述清洗套口上设有挤压平板拖把头并与清洗套口连接的挤压条,平板拖把头在清洗时受到挤压条的挤压而出水,挤压而产生的出水可直接注入清洗区,也可排到清洗区外面,对于排到清洗区外面的情况,本领域技术人员可以不用另外增设污水出口,这种情况下,清洗区可以经由挤压条排出部分污水。另一种情况是,在清洗区另外再设置污水出口,用于彻底排出清洗区中的污水。事实上,在本发明的部分实施例中,所述清洗区包括设置在挤压条上的第一污水出口,而在本发明的部分实施例中,所述清洗区包括设置在清洗区下部的第二污水出口,在本发明的部分实施例中,所述清洗区包括设置在挤压条上的第一污水出口以及设置在清洗区下部的第二污水出水口。In the cleaning zone in the cleaning bucket according to some embodiments of the present invention, a sewage outlet is specially provided on the cleaning zone for discharging the sewage in the cleaning zone, and the cleaning zone is generally provided with a cleaning sleeve for cleaning the flat mop head, the cleaning sleeve The mouth is provided with a squeeze bar for pressing the flat mop head and connected with the cleaning sleeve. The flat mop head is squeezed by the squeeze bar to clean the water during the cleaning, and the water generated by the extrusion can be directly injected into the cleaning area or can be discharged. Outside the cleaning zone, for the case of discharging outside the cleaning zone, those skilled in the art may not need to additionally add a sewage outlet. In this case, the cleaning zone may discharge part of the sewage through the squeeze bar. In another case, a sewage outlet is additionally provided in the washing zone for completely discharging the sewage in the washing zone. In fact, in some embodiments of the invention, the cleaning zone includes a first sewage outlet disposed on the extruded strip, and in some embodiments of the invention, the cleaning zone includes a lower portion of the cleaning zone. The second sewage outlet, in some embodiments of the present invention, the washing zone includes a first sewage outlet disposed on the extruded strip and a second sewage outlet disposed at a lower portion of the washing zone.
第一污水出口随着平板拖把在清洗区内的活塞式清洗运动,可自行排出污水,第二污水出口则设置了控制污水排出的污水阀门或者污水水泵,所述污水阀门包括堵住第二污水出口的第二密封塞以及传动连接第二密封塞的污水阀门开关,传动连接方式可以是螺纹传动连接、齿轮传动连接、轴传动连接、连杆传动连接中的一种或多种。The first sewage outlet can discharge the sewage by itself with the piston cleaning movement of the flat mop in the cleaning area, and the second sewage outlet is provided with a sewage valve or a sewage water pump for controlling the discharge of the sewage, and the sewage valve includes blocking the second sewage. The second sealing plug of the outlet and the sewage valve switch for connecting the second sealing plug may be one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection and a link transmission connection.
在本发明的部分实施例中,污水阀门还包括推动第二密封塞堵住第二污水出口的污水阀门,打开污水阀门如不操作,第二密封塞可自动堵住第二污水出口。In some embodiments of the present invention, the sewage valve further includes a sewage valve that pushes the second sealing plug to block the second sewage outlet. If the sewage valve is opened, the second sealing plug can automatically block the second sewage outlet.
在本发明的部分实施例中,清洗桶还包括与污水阀门或污水水泵连接的控制电路,该控制电路可同时控制净水水泵或净水阀门,从而实现清洗区自动换水的功能。In some embodiments of the present invention, the washing tub further includes a control circuit connected to the sewage valve or the sewage water pump, and the control circuit can simultaneously control the water purifying water pump or the water purifying valve, thereby realizing the function of automatically changing the water in the washing area.
实施例1Example 1
一种平板拖把清洗桶,包括桶体1、清洗区10、净水区3以及污水区2,所述清洗区10与净水区3通过进水管道6连通,桶体1设有支撑净水区3的净水区支撑位4,该支撑位4可以是如本实施例所述的位于桶体1底部的支撑座也可以是设置在桶体口或内壁的支撑整个净水区3重量的支撑结构,该结构对本领域技术人员而言是常规的,只要能起到支撑作用均可。A flat mop cleaning bucket comprises a barrel body 1, a
所述清洗区10设有与进水管道6连通的净水进口以及排出清洗区10内污水的污水出口,净水进口上设有控制净水流入清洗区10流入量的净水阀门25,所述清洗区10内设有浮力块8,所述浮力块8通过连接体9与净水阀门25连接,由此,浮力块8在清洗区10中的上下浮动可以控制净水阀门25的开关闭合,以此控制净水进入清洗区10的流量。The
所述连接体9包括与浮力块8连接的固定段11以及与净水阀门25连接的活动段12,固定段11一端设有螺纹套13,活动段12设有与所述螺纹套13螺 纹配合的螺纹柱14,通过螺纹旋转可以事先调整固定段11与活动段12的相对位置,以此可以调整清洗区10所允许的最高水位。The connecting
所述清洗区10还包括位于清洗区10顶部的清洗套口5,该清洗套口5供平板拖把头7清洗时插入或者拔出,清洗套口5设有清洗平板拖把头7拖布的挤压条28、挤压端、抵挡片15、连接挤压端与抵挡片15的转杆16以及与挤压端连接的第一弹簧17,在本实施例中,所述挤压端为挤压滚轮18,挤压条28与挤压滚轮18构成对平板拖把头7的挤压,平板拖把头7在插入清洗套口5后,挤压滚轮18受到挤压在第一弹簧17的压缩下,推动转杆16转动,从而带动抵挡片15卡住活动段12螺纹柱14中的螺纹凹槽,此时,由于被抵挡片15卡住,浮动块8不会随着清洗区10水位的波动而发生上下晃动,进而影响净水阀门25的正常开关调节。而当平板拖把头7从清洗套口5中拔出时,第一弹簧17推动挤压滚轮18复位,并通过转杆16带动抵挡片15从活动段12螺纹柱14中的螺纹凹槽中拨出,从而恢复清洗区10水位对浮动块8上浮动的控制。The
净水区10底部与进水管道6的连接处设有出水孔26,净水区10在出水孔26处设有密封腔20、第二弹簧22、在密封腔20内活动的第一密封塞24以及滑动块23,第二弹簧22一端抵住密封腔20顶部,另一端通过滑动块23抵住第一密封塞24,滑动块23与密封腔20匹配,从而确保第一密封塞24能够准确的塞住出水孔26,进水管道6与净水区连通一端设有顶块19用于插入出水孔26并将第一密封塞24从出水孔26中顶出,顶块19上设有进水管道开口27,密封腔20设有开口21,当顶块19将第一密封塞24从出水孔26顶出后,净水区3中的净水就可以经过开口21及进水管道开口27流入进水管道6并最终进入清洗区10。A
而当整个净水区3提离净水区支撑位4时,顶块19从出水孔26中拔出,第二弹簧22通过滑动块23推动第一密封塞24重新堵住出水孔26,这样净水区3就可以通过水龙头等外界水源重新蓄水,而不会在蓄水过程中出现漏水现象。When the entire
本实施例所述清洗桶中的清洗区10设有第一污水出口30,所述第一污水出口位于清洗套口5一侧,挤压条28每次清洗时对平板拖把头7的挤压清洗,被挤压的污水经挤压条28上的导流片29从第一污水出口30排出至污水区2内。The
实施例2Example 2
实施例2所述的一种平板拖把清洗桶与实施例1基本相同,例如本实施例所述清洗桶包括桶体30、清洗区33、净水区31以及污水区32,净水区31通过连接通道34与清洗区33连通,连接通道34具有刚性,因此可以支撑所述净水区31,清洗区33除了具有实施例1所述的第一污水出口外,还在清洗区33下部设置第二污水出口37,清洗区33净水进口及第二污水出口37分别设置净水阀门38及污水阀门36,清洗区33中的污水在平板拖把头清洗时可以通过第一污水出口排到污水区32内,而在清洗结束后,可以通过第二污水出口37排出到污水区32内。The flat mop cleaning bucket of the
净水阀门38及污水阀门36均与连动杆35通过齿轮传动连接,转动连动杆35就可以同时控制净水阀门38及污水阀门36,例如,在需要向清洗区33注水 时,转动连动杆35,使净水阀门38打开而污水阀门36关闭,而需要将清洗区33内的污水排出时,转动连动杆35,使净水阀门38关闭而污水阀门打开。The
本实施例中,净水区33与实施例1一样位于清洗区33的上方,这样,净水区33中的净水可以自动流入清洗区33中,因此使用时不需要向净水提供从净水区31向清洗区33流动的动力,只要确保净水区31中的水位高度高于清洗区33的水位高度。In the present embodiment, the
净水区31顶部还设置了注水口39,注水完毕后,塞住注水口39,在净水阀门38打开的前提下,同样可以使净水区31中的净水自动流入清洗区33中。A
实施例3Example 3
本实施例所述的一种平板拖把清洗桶与实施例1基本相同,例如本实施例所述清洗桶也包括桶体40,所述桶体40由隔板50隔成净水区46及污水区41,所述清洗区43通过清洗区支撑位42设置在污水区41内便于清洗区43排出污水。The flat mop cleaning bucket of the embodiment is substantially the same as the first embodiment. For example, the cleaning bucket of the embodiment also includes a
清洗区43通过净水水泵47与净水区46连通,所述净水水泵47一端通过抽水管道45与净水区46底部连通,另一端通过排水管道44与清洗区43连通,本实施例所述清洗桶还包括控制电路49以及控制电路开关48,控制电路49与净水水泵47连接,从而可以控制净水水泵47的开关。The
本实施例所述清洗区43同样设有清洗套口51,在清洗套口51上设有第一污水出口,这些均与实施例1一致,平板拖把头在清洗套口51上清洗时产生的污水经第一污水出口排到污水区41,对清洗区43的及时补水由净水水泵47完成,控制电路49设有计时模块用于对净水水泵47的工作时间计时,确保每次利用净水水泵47向清洗区43输送的净水量相同。The
实施例4Example 4
本实施例所述清洗桶与实施例3完全相同,其不同点在于,本实施例在清洗区43中设置了控制电路的水位感应端,控制电路49通过水位感应端的信号控制净水水泵47的工作时间,确保每次利用净水水泵47向清洗区43输送的净水量能够根据清洗区的水位自动调整,在水位感应端的作用下,本领域技术人员可以舍弃实施例3中的计时模块。The cleaning bucket of the embodiment is identical to that of the third embodiment, and the difference is that the water level sensing end of the control circuit is disposed in the
本领域技术人员所知的任何测量水位的感应器均可以作为本实施例所述的水位感应端,并产生类似的技术效果。另外,由于净水水泵47的作用,净水区46的位置实际上可以任意设置,而变得没有限定。Any sensor that measures the water level known to those skilled in the art can be used as the water level sensing end of the present embodiment and produces similar technical effects. Further, due to the action of the water
实施例5Example 5
本实施例所述清洗桶与实施例3基本相同,包括桶体60,隔板63将桶体60隔成净水区65及污水区61,清洗区62设置在污水区61内,清洗区62设有净水进口66,本实施例需要通过盛水容器64在净水区65盛水后倒入净水进口66向清洗区62注水。The cleaning bucket of the embodiment is substantially the same as the
本发明在实施例部分列举了几个典型的清洗桶,实际上,在控制清洗区进 水及出水方面,本领域技术人员可以选择性的采用水泵和/或阀门,而控制电路的使用可以极大的增加清洗区进水及出水的智能化程度,当然,如实施例2所述,采用机械方式控制清洗区进水及出水仍然能够带来良好的控制效果。The present invention exemplifies several typical cleaning buckets in the embodiment section. In fact, those skilled in the art can selectively use water pumps and/or valves in controlling the water inlet and outlet water in the cleaning zone, and the control circuit can be used extremely. The increase in the degree of intelligence of the influent and effluent of the washing zone is greatly increased. Of course, as described in
本发明在机械方式控制清洗区进水及出水方面采用了螺纹传动连接、齿轮传动连接、轴传动连接以及连杆传动连接中的一种或者多种,本领域技术人员可以根据针对各种机械结构选用合适的传动方式,给消费者对清洗区的进水及出水带来良好的控制体验。The invention adopts one or more of a screw transmission connection, a gear transmission connection, a shaft transmission connection and a link transmission connection in mechanically controlling the water inlet and outlet of the cleaning zone, and those skilled in the art can according to various mechanical structures. The selection of a suitable transmission method will give consumers a good control experience on the influent and effluent of the cleaning area.
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| CN201711312175.6A CN107837053B (en) | 2017-12-01 | 2017-12-01 | Flat mop cleaning barrel |
| CN201711312175.6 | 2017-12-01 |
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| WO2019105141A1 true WO2019105141A1 (en) | 2019-06-06 |
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| CN111248828A (en) * | 2019-09-05 | 2020-06-09 | 成都美派环保科技有限公司 | A mop cleaning device |
| CN112120624A (en) * | 2019-11-15 | 2020-12-25 | 王玉龙 | Flat mop cleaning barrel with divided sewage |
| CN112956978A (en) * | 2021-02-20 | 2021-06-15 | 嘉兴捷顺旅游制品有限公司 | Cleaning barrel of cleaning device |
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| CN107837053B (en) * | 2017-12-01 | 2022-05-24 | 永康市清唯工贸有限公司 | Flat mop cleaning barrel |
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Also Published As
| Publication number | Publication date |
|---|---|
| CN107837053B (en) | 2022-05-24 |
| CN107837053A (en) | 2018-03-27 |
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