WO2024038973A1 - Unité d'élimination d'eau de pluie de parapluie et système d'élimination d'eau de pluie de parapluie comprenant celle-ci - Google Patents
Unité d'élimination d'eau de pluie de parapluie et système d'élimination d'eau de pluie de parapluie comprenant celle-ci Download PDFInfo
- Publication number
- WO2024038973A1 WO2024038973A1 PCT/KR2022/020623 KR2022020623W WO2024038973A1 WO 2024038973 A1 WO2024038973 A1 WO 2024038973A1 KR 2022020623 W KR2022020623 W KR 2022020623W WO 2024038973 A1 WO2024038973 A1 WO 2024038973A1
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- WIPO (PCT)
- Prior art keywords
- umbrella
- rainwater
- removal unit
- rainwater removal
- long
- 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.)
- Ceased
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Classifications
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- A—HUMAN NECESSITIES
- A45—HAND OR TRAVELLING ARTICLES
- A45B—WALKING STICKS; UMBRELLAS; LADIES' OR LIKE FANS
- A45B25/00—Details of umbrellas
- A45B25/28—Drip receptacles for umbrellas; Attaching devices therefor
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B5/00—Drying solid materials or objects by processes not involving the application of heat
- F26B5/08—Drying solid materials or objects by processes not involving the application of heat by centrifugal treatment
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F26—DRYING
- F26B—DRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
- F26B5/00—Drying solid materials or objects by processes not involving the application of heat
- F26B5/14—Drying solid materials or objects by processes not involving the application of heat by applying pressure, e.g. wringing; by brushing; by wiping
Definitions
- the present invention relates to an umbrella rainwater removal unit and an umbrella rainwater removal system equipped with the same. More specifically, it is provided with a long umbrella rainwater removal unit and a short umbrella rainwater removal unit, and when it rains, an umbrella is selectively inserted to remove rainwater, and rainwater is removed. It relates to an umbrella rainwater removal unit whose efficiency can be increased and an umbrella rainwater removal system equipped with the same.
- an umbrella is a daily necessity that is used to open and block rain in rainy weather, and is composed of a support pole with a handle, a plurality of radially foldable poles on the top of the support pole, and an umbrella cloth installed on the poles.
- the umbrella cloth is made of waterproof material so that it does not stain or absorb water droplets, so when you fold the umbrella and enter the building, the rainwater from the waterproof umbrella cloth flows down to the floor and pollutes it. To prevent this, an umbrella is placed around the entrance door. The stand will be placed.
- an umbrella rainwater removal device has been proposed to remove rainwater from the umbrella cloth surface of an umbrella.
- the technical problem to be solved by the present invention is to provide an umbrella rainwater removal system that removes rainwater in a closed space, prevents water from splashing outside during the rainwater removal process, and increases rainwater removal efficiency.
- the rainwater removal system of the present invention includes a lower case having an internal space; An upper part that is provided to stand upright at a certain height from the lower case and includes a long umbrella insertion opening along the height direction on one side of the side and a short umbrella insertion opening adjacent to the long umbrella insertion opening on the upper surface connected to the top of the side. case; It is disposed inside the upper case so as to be close to the long umbrella insertion opening, and is provided to be lifted up and down along the height direction of the upper case, and when the long umbrella is inserted into the upper case through the long umbrella insertion opening, it rises to accommodate the umbrella cloth.
- Jangwoosan rainwater removal unit configured to absorb rainwater after rainwater; a short umbrella rainwater removal unit disposed adjacent to the long umbrella rainwater removal unit inside the upper case and configured to absorb rainwater while receiving the umbrella cloth of the short umbrella inserted through the short umbrella insertion opening; A first sensor provided on the top of the long umbrella rainwater removal unit or inside the long umbrella insertion opening to detect whether the long umbrella is inserted; a second sensor provided on the top of the single umbrella rainwater removal unit or inside the single umbrella insertion opening to detect whether the single umbrella is inserted; and a control unit that operates the long umbrella rainwater removal unit and the short umbrella rainwater removal unit when detection signals are output from the first sensor and the second sensor.
- the present invention is provided with a rainwater removal unit that can remove rainwater from a short umbrella and a long umbrella, so that rainwater can be selectively removed. During the rainwater removal process, rainwater does not splash to the outside, and the rainwater is removed so that the umbrella can be held. It has the effect of allowing free entry and exit.
- the Jangwoosan rainwater removal unit primarily absorbs rainwater along the longitudinal direction of the umbrella spring of the Jangwoosan during the process of the umbrella cloth compression member rising, and then absorbs rainwater through suction pressure within the enclosed space within the umbrella cloth compression member and bellows.
- the rainwater removal efficiency can be increased because the rainwater is finally sucked and removed through the rainwater suction process.
- FIG. 1 is a perspective view of an umbrella rainwater removal system according to the present invention
- Figure 2 is a perspective view showing the inside of the umbrella rainwater removal system according to the present invention.
- Figure 3 is a cross-sectional view of the Jangwoosan rainwater removal unit applied to the present invention.
- Figure 4 is a partial enlarged cross-sectional view of the Jangwoosan rainwater removal unit applied to the present invention
- Figure 5 is a perspective view for explaining the appearance of the falling rainwater guiding member of the Jangwoosan rainwater removal unit applied to the present invention
- Figure 6 is an enlarged view of the lifting and lowering drive device of the Jangwoosan rainwater removal unit according to the present invention.
- Figure 7 is a side view showing the state before operation of the Jangwoosan rainwater removal unit according to the present invention.
- Figure 8 is a side view showing the state after operation of the Jangwoosan rainwater removal unit according to the present invention.
- Figure 9 is a side view showing an example of a rainwater removal unit for a single umbrella according to the present invention.
- Figure 10 is a perspective view showing an example of a dehydration tank constituting a rainwater removal unit for a single umbrella according to the present invention.
- Figure 11 is a perspective view showing a state in which the rainwater removal unit for a single umbrella according to the present invention is installed.
- the umbrella rainwater removal unit of the present invention consists of a short umbrella rainwater removal unit and a long umbrella rainwater removal unit, which are each installed in the lower case, and the umbrella rainwater removal system is formed with the upper case surrounding them and a sensor that detects the umbrella.
- the umbrella rainwater removal system includes a lower case 100, an upper case 200, a long umbrella rainwater removal unit 300, a short umbrella rainwater removal unit 400, and a first umbrella rainwater removal unit. It may include a sensor 510, a second sensor 520, and a control unit 530.
- the lower case 100 may be provided in the form of a box having an internal space.
- a water collection tank 110 may be provided on the bottom of the lower case 100, and the space above and around the water collection tank 110 may provide a passage through which air can communicate.
- the upper case 200 is provided to stand upright at a certain height from the lower case 100. For example, it may be high enough to accommodate an umbrella of 60cm or more in height.
- the upper case 200 includes a long umbrella insertion opening 210 opened along the height direction on one side of the side, and a short umbrella insertion opening 220 adjacent to the long umbrella insertion opening 210 on the upper surface connected to the top of the side. . Since the long umbrella insertion opening 210 is open along the height direction of the side, a long umbrella can be inserted horizontally from the side, and the short umbrella insertion opening 220 can insert a short umbrella in a vertical direction from the top.
- the rainwater removal unit 300 is disposed inside the upper case 200 so as to be close to the umbrella insertion opening 210 and is capable of being raised and lowered along the height direction of the upper case 200.
- the long umbrella When the long umbrella is inserted into the upper case 200 through the long umbrella insertion opening 210, it rises to accommodate the umbrella spring and then sucks rainwater.
- the long umbrella rainwater removal unit 300 may include a long umbrella receiving member 310, a bellows 320, an umbrella support member 330, an umbrella cloth pressing member 340, and a lifting and lowering drive device 350.
- the rain umbrella receiving member 310 has a hollow cylindrical shape, and may include a rain umbrella entry opening 311 that opens at a portion of the length along the height direction on one side of the cylindrical shape.
- the long umbrella entry opening 311 is arranged to correspond to the long umbrella insertion opening 210 of the upper case 200, so that the long umbrella insertion opening 210 allows the long umbrella to be inserted.
- the long umbrella can be accommodated by entering the long umbrella receiving member 310 through the long umbrella entry opening 311.
- the bellows 320 is disposed inside the lower portion of the umbrella receiving member 310, unfolds along the height direction of the rain umbrella receiving member 310, and is folded downward.
- the lower end of the bellows 320 may be fixed to the upper surface of the water sump 110 of the lower case 100.
- the umbrella support member 330 is disposed inside the bellows 320 at the lower part of the long umbrella receiving member 310, and can support the lower end of the long umbrella inserted into the long umbrella receiving member 310.
- the lower end of the umbrella support member 330 may be positioned to be spaced apart from the bottom surface of the water collection tank 110.
- the umbrella support member 330 may be supported through a cylindrical support 360 that is installed upright from the bottom surface of the water collection tank 110 and has a plurality of discharge holes 361 in the circumferential direction.
- the umbrella support member 330 may be provided in an upper-lower narrow structure where the diameter decreases toward the lower side and may have an inclined surface 331, and a plurality of side discharge holes arranged along the circumferential direction on the inclined surface 331. (332) can be formed.
- the umbrella cloth pressing member 340 is connected to the upper end of the bellows 320 and may be provided in an annular shape having an inner diameter capable of pressing the umbrella cloth around the long umbrella supported by the umbrella support member 330. Meanwhile, the umbrella cloth compression member 340 may include an annular compression ring 341, an annular absorbent cloth 342, an annular housing 343, and an annular supporter 344.
- the annular pressure ring 341 may include a plurality of pressure protrusions 3411 arranged along the circumferential direction on the inside, and an absorbent material receiving groove 3412 formed in an annular shape below the pressure protrusions 3411.
- the annular absorbent cloth 342 is provided in the absorbent cloth receiving groove 3412. At this time, the inner surface of the absorbent cloth 342 may be arranged to protrude beyond the ends of the plurality of pressure protrusions 3411 in the protruding direction.
- the annular housing 343 has a height longer than the height of the compression ring 341 and accommodates the compression ring 341 at the inner center.
- the annular support 344 includes a plate-shaped annular support 3441 supporting the lower surface of the annular housing 343 and a cylindrical shape that extends vertically in the inner direction of the annular support 3441 and whose lower end is connected to the bellows 320. It may include a bellows connection portion 3442.
- the lifting driving device 350 can lift the umbrella cloth compression member 340 along the height direction of the umbrella receiving member 310.
- the lifting driving device 350 can lift the umbrella cloth pressing member 340 by winding a wire.
- the lifting drive device 350 includes a plurality of guide rods 351, a plurality of moving brackets 352, a first wire 353, a second wire 354, and a first wire winding drum 355. , it may include a second wire winding drum 356, a first winding motor 357, and a second winding motor 358.
- a plurality of guide rods 351 may be parallel to the height direction of the umbrella receiving member 310 and arranged in the circumferential direction of the rain umbrella receiving member 310.
- the plurality of movable brackets 352 include a cylindrical body portion 3521 that is slidably coupled to each guide rod 351, the outer surface of the annular housing 343 of the umbrella cloth compression member 340, and the cylindrical body portion 3521. ) may include a housing connection portion 3522 connected between one side of the side of the cylindrical body portion 3521, and a wire connection portion 3523 protruding in a plate shape from the other side of the side of the cylindrical body portion 3521.
- first wire 353 may be connected to the upper side of the wire connection portion 3523 of one of the plurality of movable brackets 352, and the other end may be fixed to the first wire winding drum 355.
- the second wire 354 has one end connected to the lower side of the wire connection part 3523 of the movable bracket 352 connected to the first wire 353, and the other end can be fixed to the second wire winding drum 356. there is.
- the first wire winding drum 355 is disposed at the upper end of the rain umbrella receiving member 310 so as to be located above the moving bracket 352 to which the first wire 353 is connected, and the first wire 353 is wound or unwound. .
- the second wire winding drum 356 is disposed in the direction of the lower end of the long umbrella receiving member 310 so as to be located below the moving bracket 352 to which the second wire 354 is connected, and the second wire 354 is wound or It is released.
- the first winding motor 357 rotates the first wire winding drum 355 so that the first wire 353 is wound or unwound from the first wire winding drum 355.
- the second winding motor 358 rotates the second wire winding drum 356 so that the second wire 354 is wound or unwound from the second wire winding drum 356.
- this lifting drive device 350 when the first winding motor 357 is rotated, the first wire 353 is wound around the first wire winding drum 355 and the moving bracket 352 connected to the first wire 353 is used.
- the umbrella cloth pressing member 340 is raised by pulling in the upward direction, and when the second winding motor 358 is rotated, the second wire 354 is wound on the second wire winding drum 356 and the second wire 354
- the umbrella cloth compression member 340 can be lowered by pulling the moving bracket 352 connected to the downward direction.
- a guide slit ( 312) can be formed.
- the umbrella spring pressure member 340 may further include a falling rainwater guiding member 345.
- the falling rainwater guiding member 345 may include a bottom portion 3451 and a side portion 3452.
- the bottom portion 3451 is provided in the form of an annular plate and may include a plurality of falling rainwater discharge holes 3451a arranged along the circumferential direction.
- the side portion 3452 may extend vertically from the outer edge of the bottom portion 3451 to its top.
- This falling rainwater guiding member 345 has a bottom portion 3451 seated on an annular support portion 3441 and guides rainwater falling from the absorbent cloth 342 to the inside of the bellows 320 through the falling rainwater discharge hole 3451a. It can be discharged.
- suction pressure may be provided to the inside of the bellows 320 of the rainwater removal unit 300.
- the suction pressure may be provided by a suction pump (not shown) of a bidirectional suction structure, and the suction pump is installed in the lower part of the rainwater removal unit 400. Is provided, and the pump housing 560 is provided to enable fluid communication with the inside of the bellows 320 of the long rainwater guiding member 345 through the interior of the short rainwater guiding member 345 and the interior of the lower case 100.
- the suction pressure of the suction pump may be supplied to the inside of the bellows 320.
- the first sensor 510 is provided on the top of the long umbrella rainwater removal unit 300 or inside the long umbrella insertion opening 210 and can detect whether the long umbrella is inserted and whether the umbrella is removed after rainwater removal.
- the first sensor 510 may be provided inside the umbrella receiving member 210.
- the form of the first sensor 510 there is no particular limitation on the form of the first sensor 510, and for example, it may be in a form that detects moisture or a form that detects the proximity of an umbrella.
- the second sensor 520 is provided on the top of the short umbrella rainwater removal unit 400 or inside the short umbrella insertion opening 220, which will be described in the second embodiment, and can detect whether the short umbrella is inserted.
- the form of the second sensor 520 may be in a form that detects moisture or a form that detects the proximity of an umbrella.
- the control unit 530 can operate the long umbrella rainwater removal unit 300 and the short umbrella rainwater removal unit 400.
- the control unit 530 may be provided inside the upper case 200 so as to be placed below the input unit 540, which will be described later.
- the umbrella rainwater removal system of the present invention may further include an input unit 540 and an indicator light 550.
- the input unit 540 is electrically connected to the control unit 530 and may be provided on one side of the upper surface of the upper case 200 using a button input method.
- the input unit 540 includes the maintenance time of the process of sucking rainwater by the long umbrella rainwater removal unit 300 and the short umbrella rainwater removal unit 400, the suction strength of rainwater, and the umbrella cloth of the long umbrella rainwater removal unit 300. It may be configured to set the number of times the pressing member 340 is raised and lowered.
- the indicator light 550 is electrically connected to the control unit 530 and can display the start and end of operation of the short umbrella rainwater removal unit 400 and the long umbrella rainwater removal unit 300.
- the umbrella rainwater removal system can separately remove rainwater for short umbrellas and long umbrellas.
- the long umbrella receiving member 310 of the long umbrella rainwater removal unit 300 is inserted through the long umbrella entry opening 311 corresponding to the long umbrella insertion opening 210. accepted inside.
- the lower end of the long umbrella is inserted into the inside of the umbrella cloth compression member 340 and is supported by the umbrella support member 330, and the first sensor 510 detects the insertion of the long umbrella and outputs it to the control unit 530.
- the control unit 530 When a detection signal is input from the first sensor 510 to the control unit 530, the control unit 530 starts the lifting and lowering operation of the Jangwoosan rainwater removal unit 300. That is, the first winding motor 357 of the lifting drive device 350 is rotated by the control unit 530 to wind the first wire 353 around the first wire winding drum 355, thereby forming the first wire 353 and the first wire 353.
- the umbrella cloth compression member 340 is raised by pulling the connected moving bracket 352 upward.
- the plurality of pressure protrusions 3411 of the annular pressure ring 341 of the umbrella cloth compression member 340 rise while pressing the umbrella cloth of the long umbrella, causing rainwater to flow into the lower part of the pressure protrusion 3411 in an action similar to squeezing the umbrella cloth. It falls toward the absorption cloth 342 and is absorbed by the absorption cloth 342, and at the same time, the absorption cloth 342 rises in close contact with the surface of the rainwater of the umbrella spring and can absorb rainwater on the surface of the umbrella spring. Additionally, as the bellows 320 unfolds, it surrounds the longitudinal direction of the long umbrella.
- the present invention when the umbrella cloth compression member 340 rises to the maximum height, the umbrella cloth of the long umbrella is surrounded by the bellows 320 and is accommodated inside the umbrella cloth compression member 340 and the bellows 320, in this state. While maintained, suction pressure is provided by the suction pump inside the bellows 320, and rainwater on the surface of the umbrella spring of the long umbrella is sucked in the direction of the umbrella support member 330.
- the sucked rainwater is discharged through the falling rainwater discharge hole 3451a of the falling rainwater guiding member 345, is guided to the inside of the bellows 320, is discharged, and then falls along the longitudinal direction of the bellows 320 to the water collection tank ( 110), and at the same time, the rainwater sucked from the lower end of the long umbrella is discharged along the slope 331 of the umbrella support member 330, and some of it is discharged through the plurality of side discharge holes 332, and the rest is discharged from the umbrella support member 330. It is discharged through the lower end of member 330.
- the control unit 530 rotates the second winding motor 358, and when the second winding motor 358 rotates, the second wire 354 As it is wound on the second wire winding drum 356, the moving bracket 352 connected to the second wire 354 is pulled downward, so that the umbrella cloth pressing member 340 is lowered and returns to its initial position.
- the short umbrella is inserted into the short umbrella rainwater removal unit 400 to remove rainwater from the surface of the umbrella spring of the single umbrella.
- a short umbrella can be placed in a dehydration tank and rainwater can be removed by rotating the dehydration tank.
- the umbrella rainwater removal system has the advantage of preventing rainwater from splashing to the outside because it removes rainwater from each long umbrella and short umbrella within a closed space.
- the umbrella rainwater removal unit 300 primarily absorbs rainwater by pressing and absorbing the umbrella spring in the process of the umbrella cloth compression member 340 rising, and then the umbrella cloth compression member 340 descends and secondaryly absorbs rainwater.
- Rainwater is removed by absorbing pressure, and rainwater is sucked and removed through the process of sucking rainwater through suction pressure within the closed space within the umbrella cloth compression member 340 and bellows 320, so rainwater removal efficiency.
- the rainwater sucked from the surface of the umbrella spring of the long umbrella is discharged into the internal space of the bellows 320, and at the same time, the rainwater discharged toward the umbrella support member 330 that supports the lower end of the long umbrella is the umbrella support member 330. Since it is also discharged in the side direction through the lower part and the plurality of side discharge holes 332, there is an advantage in that rainwater can be discharged quickly when rainwater is sucked.
- the bellows 320 rises to remove rainwater, and the bellows 320 descends again to remove the umbrella, the first sensor detects this, and the control unit 530 receives this signal and operates the lifting and lowering drive device 350. is operated again to further lower the moving bracket (352) to squeeze out moisture from the absorbent cloth.
- the second embodiment according to the present invention is a description of a rainwater removal unit for a single umbrella.
- the single umbrella rainwater removal unit 400 of the present invention is disposed on the upper part of the lower case 100 and inside the upper case 200, and is located below the single umbrella insertion opening 220, so that the single umbrella insertion opening 220 ) It may be configured to absorb rainwater while the umbrella spring of the single umbrella inserted through the is accommodated.
- the single umbrella rainwater removal unit 400 may include an upper housing 410, a lower housing 420, a dehydration tank 430, a first absorbent cloth 440, and a rotary power device 450. there is.
- the upper housing 410 is a hollow cylindrical shape, and the upper and lower ends may be open.
- the lower housing 420 has a hollow cylindrical shape, the upper end is open and the lower end is closed, and the lower end of the upper housing 410 can be inserted into the open upper part and coupled around the lower end of the upper housing 410. That is, the upper housing 410 may be coupled around the inserted lower portion.
- a hose is connected to one side of the lower housing 420 and the end of the hose extends to the sump 110 to discharge rainwater discharged from the dehydration tank 430 into the sump 110.
- the dehydration tank 430 may be provided in a hollow cylindrical shape with the upper and lower surfaces open.
- the dehydration tank 430 is rotatably provided inside the upper housing 410, has a perforated side, and may have a plurality of drain holes 431 arranged around the lower surface.
- the upper housing includes a seating protrusion 432 formed in an annular shape at its lower end
- the single umbrella rainwater removal unit 400 includes a first rotation implementation flange 461 and a second rotation flange 461. It may include an implementation flange 462, a first rotation guide plate 463, a second rotation guide plate 464, a first separation prevention plate 465, and a second separation prevention plate 466.
- the first rotation flange 461 may be provided around the top of the dehydration tank 430.
- the first rotation implementation flange 461 is provided with a cylindrical first dehydration tank coupling portion 4611 coupled to the upper circumference of the dehydration tank 430 at its lower portion, so that it can be coupled to the dehydration tank 430. there is.
- the second rotation flange 462 may be provided around the lower end of the dehydration tank 430.
- the second rotation implementation flange 462 is provided with a cylindrical second dehydration tank coupling portion 4621 coupled to the lower circumference of the dehydration tank 430 on its upper portion, so that it can be coupled to the dehydration tank 430. there is.
- the first rotation guide plate 463 is provided in an annular shape along the inner upper part of the upper housing 410, and may include a first flange support jaw 4631 on which the first rotation implementation flange 461 is seated. You can.
- the first rotation guide plate 463 may have an inner diameter corresponding to the outer diameter of the upper end of the dehydration tank 430.
- the first rotation guide plate 463 may be provided to be integrated with the upper housing 410.
- the second rotation guide plate 464 is provided in the form of an annular plate, the outer edge of which is supported and fixed to the seating ridge 432 of the dehydration tank 430, and is provided inside the lower end of the upper housing 410, and the second rotation implementation flange (462) may include a second flange support jaw 4641 on which it is seated.
- the second rotation guide plate 464 may have an inner diameter corresponding to the outer diameter of the second dehydration pipe coupling portion 4621 of the second rotation implementation flange 462.
- the second rotation guide plate 464 may be fixed to the seating jaw 432 through screws or bolts.
- the first separation prevention plate 465 is provided in the form of an annular plate and is fixed to the upper surface of the first rotation guide plate 463 to cover the first rotation implementation flange 461 seated on the first flange support jaw 4631. You can.
- the first separation prevention plate 465 may be fixed through screws or bolts.
- the second separation prevention plate 466 is provided in the form of an annular plate and is fixed to the upper surface of the second rotation guide plate 464 to cover the second rotation implementation flange 462 seated on the second flange support jaw 4641. You can.
- the second separation prevention plate 466 may be fixed through screws or bolts.
- first flange support jaw 4631 and the second flange support jaw 4641 are formed to be higher than the thickness of the first rotation implementation flange 461 and the second rotation implementation flange 462,
- the first anti-separation plate 465, the first rotation flange 461, and the second anti-separation plate and the second rotation flange may have a gap at which the dehydration tank can rotate. Accordingly, the dehydration tank 430 can be easily rotated.
- the first absorption cloth 440 may be provided inside the dehydration tank 430 to cover the inner surface of the dehydration tank 430. That is, it may be provided to cover the inner surface of the perforated side.
- the rotation power device 450 rotates the dehydration tank 430.
- the rotary power device 450 may include a drive motor 451, a drive pulley 452, a driven pulley 453, and a belt 454, and a lower housing 420 for connection of the belt 454.
- a cut opening 411 may be formed on one side of the side surface to be located at the lower end of the upper housing 410.
- the drive motor 451 may be disposed on one side of the outer surface of the lower housing 420.
- a horizontal plate may be provided on one side of the outer surface of the lower housing 420 and placed on the upper surface.
- the drive pulley 452 is coupled to the drive shaft of the drive motor 451 so that the drive shaft rotates.
- the driven pulley 453 is rotatably provided on the lower surface of the dehydration tank 430 and can be accommodated inside the lower housing 420.
- the belt 454 may be connected between the driving pulley 452 and the driven pulley 453 by having one side connected to the driven pulley 453 inserted into the lower housing 420 through the cutout opening 411.
- suction pressure may be provided inside the dehydration tank 430 of the rainwater removal unit 400.
- the suction pressure may be provided by a suction pump (not shown) of a two-way suction structure, and the suction pump is installed in a pump housing 560 at the lower part of the rainwater removal unit 400.
- the pump housing 560 communicates with the lower housing 420 so that suction pressure can be provided inside the dehydration tank 430 through a plurality of drain holes 431 of the dehydration tank 430.
- the umbrella rainwater removal device may further include a single umbrella insertion guide 470.
- the single umbrella insertion guide 470 may be disposed at the top of the dehydration tank inside the upper housing.
- the single umbrella insertion guide 470 may include a guide member 471 and a second absorbent cloth 472.
- the guide member 471 may include a downwardly sloping guide slope 4711 located between the inner surface of the upper housing 410 and the upper end of the dehydration tank 430, extending from the upper end of the guide slope 4711, and extending from the outer edge of the guide slope 4711. It can be coupled to the top of the upper housing 410 through a housing coupling portion 4712 having a hook 4712a.
- the second absorption cloth 472 may be provided on the inner surface of the guide slope 4711.
- the second absorption cloth 472 can absorb rainwater on the surface of the umbrella cloth of the single umbrella when the single umbrella is inserted.
- the inner surface of the second absorption cloth 472 may have an inner diameter capable of pressing the circumference of the single umbrella.
- the first sensor 510 is provided on the top of the single umbrella rainwater removal unit 400 or inside the single umbrella insertion opening 220 and can detect whether a single umbrella is inserted. There is no particular limitation on the form of the first sensor 510, and for example, it may be in a form that detects moisture or a form that detects the proximity of an umbrella.
- the control unit 530 may operate the umbrella rainwater removal unit 400 when a detection signal is received from the first sensor 510.
- the control unit 530 may be provided inside the upper case 200.
- the short umbrella When a short umbrella is inserted through the short umbrella insertion opening 220 of the upper case 200, the short umbrella is inserted into the dehydration tank 430 through the short umbrella insertion guide 470 located at the top of the short umbrella rainwater removal unit 400. It can be inserted into the inside of the dehydration tank 430 while being guided inside. At this time, a detection signal detecting that a short umbrella has been inserted is output from the first sensor 510, some rainwater can be absorbed in the second absorbent cloth 472 of the short umbrella insertion guide 470, and the short umbrella The upper part of the dehydration tank 430 can be sealed by pressing the circumference with the second absorbent cloth 472.
- the control unit 530 can drive the rotary power device 450.
- the drive motor 451 of the rotary power device 450 rotates to rotate the drive pulley 452
- the driven pulley 453 connected by the belt 454 rotates and the dehydration tank 430 can rotate. .
- suction pressure is provided through the plurality of drains 431 and the suction pump (not shown) of the dehydration tank 430, so that the rainwater on the surface of the umbrella spring of the single umbrella contained in the dehydration tank 430 can be inhaled. That is, when suction pressure is provided, rainwater is absorbed toward the first absorption cloth 440, the absorbed rainwater of the first absorption cloth 440 is sucked, and the lower case is discharged through a hose connected to one side of the lower housing 420. It can be discharged into the sump 110 of (100).
- the umbrella rainwater removal device removes rainwater by finally sucking the rainwater while rotating the dehydration tank 430 that accommodates the single umbrella, so there is an advantage that rainwater removal efficiency can be increased.
- the second absorbent cloth 472 presses the circumference of the short umbrella and seals the inside of the dehydration tank 430, rainwater is removed within the closed space to prevent rainwater from scattering outside the dehydration tank 430. It can be prevented.
- the dehydration tank 430 can be rotated without parts such as a rotating shaft or gear, the manufacturing cost can be reduced and manufacturing is easy.
- the present invention relates to a rainwater removal unit that removes rainwater from umbrellas and a system using this rainwater removal unit, comprising a casing, a motor, a dehydration tank, a bellows that moves up and down, and a lifting and lowering drive device that removes rainwater by moving the bellows. Since it is included, it has industrial applicability.
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- Drying Of Solid Materials (AREA)
Abstract
Un système d'élimination d'eau de pluie selon la présente invention comprend : un boîtier inférieur ayant un espace interne ; un boîtier supérieur disposé verticalement par rapport au boîtier inférieur à une hauteur prédéterminée, le boîtier supérieur comprenant une ouverture d'insertion de parapluie long qui est ouverte sur un côté d'une surface latérale de celui-ci le long de la direction de la hauteur de celui-ci, et une ouverture d'insertion de parapluie court ménagée dans une surface supérieure reliée à l'extrémité supérieure de la surface latérale de sorte à être adjacente à l'ouverture d'insertion de parapluie long ; une unité d'élimination d'eau de pluie de parapluie long disposée à l'intérieur du boîtier supérieur de sorte à être adjacente à l'ouverture d'insertion de parapluie long, l'unité d'élimination d'eau de pluie de parapluie long étant disposée pour pouvoir se déplacer vers le haut/vers le bas le long de la direction de la hauteur du boîtier supérieur de sorte que, si un parapluie long est inséré dans le boîtier supérieur à travers l'ouverture d'insertion de parapluie long, l'unité d'élimination d'eau de pluie de parapluie long se déplace vers le haut, contient le tissu de parapluie, et aspire l'eau de pluie ; une unité d'élimination d'eau de pluie de parapluie court disposée à l'intérieur du boîtier supérieur de sorte à être adjacente à l'unité d'élimination d'eau de pluie de parapluie long, l'unité d'élimination d'eau de pluie de parapluie court étant conçue pour aspirer l'eau de pluie tout en contenant le tissu de parapluie d'un parapluie court inséré à travers l'ouverture d'insertion de parapluie court ; un premier capteur disposé sur la partie supérieure de l'unité d'élimination d'eau de pluie de parapluie long ou à l'intérieur de l'ouverture d'insertion de parapluie long de sorte à détecter si le parapluie long est inséré ou non ; un second capteur disposé sur la partie supérieure de l'unité d'élimination d'eau de pluie de parapluie court ou à l'intérieur de l'ouverture d'insertion de parapluie court de sorte à détecter si le parapluie court est inséré ou non ; et un dispositif de commande pour faire fonctionner l'unité d'élimination d'eau de pluie de parapluie long et l'unité d'élimination d'eau de pluie de parapluie court si des signaux de détection sont émis à partir des premier et second capteurs.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| KR1020220103930A KR102469190B1 (ko) | 2022-08-19 | 2022-08-19 | 우산 빗물제거유닛 및 이를 구비하는 우산 빗물 제거 시스템 |
| KR10-2022-0103931 | 2022-08-19 | ||
| KR10-2022-0103930 | 2022-08-19 | ||
| KR1020220103931A KR102488577B1 (ko) | 2022-08-19 | 2022-08-19 | 우산 빗물제거 장치 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2024038973A1 true WO2024038973A1 (fr) | 2024-02-22 |
Family
ID=89941986
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/KR2022/020623 Ceased WO2024038973A1 (fr) | 2022-08-19 | 2022-12-16 | Unité d'élimination d'eau de pluie de parapluie et système d'élimination d'eau de pluie de parapluie comprenant celle-ci |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2024038973A1 (fr) |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR200198766Y1 (ko) * | 2000-03-17 | 2000-10-02 | 주식회사삼전메카트로닉스 | 우산 탈수장치 |
| JP2003056982A (ja) * | 2001-08-13 | 2003-02-26 | Re-Tec:Kk | 傘脱水装置 |
| KR200469310Y1 (ko) * | 2013-05-09 | 2013-10-10 | 나두환 | 우산 건조장치 |
| KR20170140517A (ko) * | 2016-06-13 | 2017-12-21 | 주식회사 지티아너스 | 우산 빗물 제거장치 |
| KR102099716B1 (ko) * | 2019-09-09 | 2020-04-10 | 백보현 | 우산 건조장치 및 그 건조 방법 |
| KR20210089396A (ko) * | 2020-01-08 | 2021-07-16 | 원재희 | 우산 빗물 제거장치 |
| KR102469190B1 (ko) * | 2022-08-19 | 2022-11-23 | 세일정밀 공업 주식회사 | 우산 빗물제거유닛 및 이를 구비하는 우산 빗물 제거 시스템 |
-
2022
- 2022-12-16 WO PCT/KR2022/020623 patent/WO2024038973A1/fr not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| KR200198766Y1 (ko) * | 2000-03-17 | 2000-10-02 | 주식회사삼전메카트로닉스 | 우산 탈수장치 |
| JP2003056982A (ja) * | 2001-08-13 | 2003-02-26 | Re-Tec:Kk | 傘脱水装置 |
| KR200469310Y1 (ko) * | 2013-05-09 | 2013-10-10 | 나두환 | 우산 건조장치 |
| KR20170140517A (ko) * | 2016-06-13 | 2017-12-21 | 주식회사 지티아너스 | 우산 빗물 제거장치 |
| KR102099716B1 (ko) * | 2019-09-09 | 2020-04-10 | 백보현 | 우산 건조장치 및 그 건조 방법 |
| KR20210089396A (ko) * | 2020-01-08 | 2021-07-16 | 원재희 | 우산 빗물 제거장치 |
| KR102469190B1 (ko) * | 2022-08-19 | 2022-11-23 | 세일정밀 공업 주식회사 | 우산 빗물제거유닛 및 이를 구비하는 우산 빗물 제거 시스템 |
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