CN204453678U - A kind of conveyer of tool lubricating system - Google Patents
A kind of conveyer of tool lubricating system Download PDFInfo
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- CN204453678U CN204453678U CN201420764442.9U CN201420764442U CN204453678U CN 204453678 U CN204453678 U CN 204453678U CN 201420764442 U CN201420764442 U CN 201420764442U CN 204453678 U CN204453678 U CN 204453678U
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Abstract
Description
技术领域 technical field
本实用新型涉及一种具润滑装置的传送装置。 The utility model relates to a transmission device with a lubricating device.
背景技术 Background technique
目前饮料瓶的装灌方式,基本采用自动化的方式,由传送带将待灌装的空瓶子传送到灌输点,灌装完成后再将其传送走。 At present, the filling method of beverage bottles basically adopts an automated method, and the empty bottles to be filled are transferred to the infusion point by the conveyor belt, and then sent away after the filling is completed.
但是现有技术中,传送的瓶子的数量需要进行严格的控制,因此需要在此装置中配备专用的设备进行数量控制,而现有的专用的设备结构复杂,造成整个设备的制造成本增加。 However, in the prior art, the quantity of conveyed bottles needs to be strictly controlled, so it is necessary to equip the device with special-purpose equipment for quantity control, and the existing special-purpose equipment has a complex structure, resulting in an increase in the manufacturing cost of the entire equipment.
实用新型内容 Utility model content
本实用新型的目的是提供一种具润滑装置的传送装置,其可以解决现有技术中存在的上述缺点。 The purpose of this utility model is to provide a transmission device with a lubricating device, which can solve the above-mentioned shortcomings in the prior art.
本实用新型采用以下技术方案: The utility model adopts the following technical solutions:
一种具润滑装置的传送装置,包括工作台,在所述工作台上设置用于盛放物料的振动盘,所述振动盘与所述工作台之间设置用于使所述振动盘振动的振动盘动力装置,所述振动盘的一侧倾斜设置与所述振动盘相连通的第一滑道,所述第一滑道远离所述振动盘的一端设置传动导轮,所述传动导轮远离所述第一滑道的一侧倾斜设置第二滑道,所述第二滑道远离所述传动导轮的一端用于连通下一道制造工序; A conveying device with a lubricating device, comprising a workbench, on which a vibrating plate for holding materials is arranged, and a vibrating plate for vibrating the vibrating plate is arranged between the vibrating plate and the workbench A vibrating plate power device, one side of the vibrating plate is obliquely provided with a first slideway connected with the vibrating plate, and the end of the first slideway away from the vibrating plate is provided with a transmission guide wheel, and the transmission guide wheel A second slideway is arranged obliquely on the side away from the first slideway, and the end of the second slideway away from the transmission guide wheel is used to communicate with the next manufacturing process;
所述传动导轮的高度低于所述振动盘的高度,所述第二滑道靠近所述传动导轮的一端的高度低于所述传动导轮的高度且高于所述第二滑道远离所述传动导轮的一端; The height of the transmission guide wheel is lower than the height of the vibration plate, and the height of the end of the second slideway close to the transmission guide wheel is lower than the height of the transmission guide wheel and higher than the second slideway one end away from the transmission guide wheel;
所述传动导轮包括与导轮动力装置连接的导轮轴,所述导轮轴的表面沿其周向均匀分布至少三个用于装卡来自所述第一滑道的物料的挡料块,相邻两个挡料块之间的距离与单个物料的尺寸相匹配; The transmission guide wheel includes a guide wheel shaft connected with the guide wheel power device, and the surface of the guide wheel shaft is evenly distributed along its circumference at least three material stoppers for holding the material from the first slideway. The distance between two adjacent block blocks matches the size of a single material;
还包括控制器,所述控制器分别与所述导轮动力装置以及所述振动盘动力装置连接; It also includes a controller, the controller is respectively connected with the power device of the guide wheel and the power device of the vibrating plate;
还包括一润滑单元,其具有一油箱、一马达、一导油件,以及一控制器,该油箱具有一储油空间及一连通该储油空间的注油孔,该储油空间用以储存一润滑剂且经由该注油孔与一长轴的表面相通,该导油件设于该油箱的储油空间内且连接该马达,用以由该马达的驱动而将该润滑剂经由该注油孔导引至该振动盘动力装置的表面,该控制器电性连接该马达,用以控制该马达的作动。 Also includes a lubricating unit, which has an oil tank, a motor, an oil guide, and a controller, the oil tank has an oil storage space and an oil filling hole connected to the oil storage space, the oil storage space is used to store a Lubricant communicates with the surface of a major shaft through the oil hole, and the oil guiding member is arranged in the oil storage space of the oil tank and connected to the motor, so as to be driven by the motor to guide the lubricant through the oil hole Leading to the surface of the vibrating plate power device, the controller is electrically connected to the motor to control the movement of the motor.
所述第一滑道远离所述振动盘的一端活动铰接传动挡块,所述传动挡块的一端与所述第一滑道通过转轴转动连接,所述传动挡块的另一端悬空并延伸至所述导轮轴上的相邻两个所述挡料块之间。 The end of the first slideway far away from the vibrating plate is articulated with a transmission block, one end of the transmission block is connected to the first slideway through a rotating shaft, and the other end of the transmission block is suspended and extends to Between two adjacent said stop blocks on said guide wheel shaft.
所述挡料块上具有沿所述导轮轴转动方向凹陷的兜料槽。 The material blocking block is provided with a material pocket recessed along the rotation direction of the guide wheel shaft.
所述兜料槽为圆弧形凹槽、方形凹槽或者异形凹槽。 The hopper is an arc-shaped groove, a square groove or a special-shaped groove.
所述导轮轴的表面沿其轴线均匀分布五个所述挡料块。 The surface of the guide wheel shaft is evenly distributed with five blocks along its axis.
所述第一滑道的宽度与单个物料的长度相匹配;和/或,所述第二滑道的宽度与单个物料的长度相匹配。 The width of the first slideway matches the length of a single material; and/or, the width of the second slideway matches the length of a single material.
本实用新型的传送装置结构简单,成本低廉,操作方便,能精确的控制滑道内物料流通的数量,保证后续工作的正常进行。 The conveying device of the utility model has the advantages of simple structure, low cost and convenient operation, and can accurately control the quantity of material circulation in the slideway, so as to ensure the normal progress of follow-up work.
附图说明 Description of drawings
下面结合实施例和附图对本实用新型进行详细说明,其中: The utility model is described in detail below in conjunction with embodiment and accompanying drawing, wherein:
图1是本实用新型的结构示意图。 Fig. 1 is the structural representation of the utility model.
图2是本实用新型中清扫装置的结构示意图; Fig. 2 is the structural representation of cleaning device in the utility model;
图3为图2中A向的结构示意图; Fig. 3 is a schematic structural diagram of direction A in Fig. 2;
图4为图2中B向的结构示意图; Fig. 4 is a schematic structural diagram of direction B in Fig. 2;
图5为本实用新型清扫除尘装置中的模块清扫系统示意图; Fig. 5 is a schematic diagram of the module cleaning system in the cleaning and dust removal device of the present invention;
图6为本实用新型清扫除尘装置中除尘系统机构示意图; Fig. 6 is a schematic diagram of the mechanism of the dust removal system in the cleaning and dust removal device of the present invention;
图7是本实用新型中改向装置的结构示意图。 Fig. 7 is a schematic structural view of the redirection device in the present invention.
图8是本实用新型中的润滑装置的结构示意图。 Fig. 8 is a schematic structural view of the lubricating device in the present invention.
图9是图8的剖面示意图。 FIG. 9 is a schematic cross-sectional view of FIG. 8 .
具体实施方式 Detailed ways
下面结合附图进一步阐述本实用新型的具体实施方式: Further set forth the specific embodiment of the present utility model below in conjunction with accompanying drawing:
以下结合附图和实施例对本实用新型作进一步详细描述。 Below in conjunction with accompanying drawing and embodiment the utility model is described in further detail.
如图1所示,本实用新型的传送装置包括工作台1,在工作台1上设置用于盛放物料的振动盘2,振动盘2与工作台1之间设置用于使振动盘2振动的振动盘动力装置3,振动盘2的一侧倾斜设置与振动盘2相连通的第一滑道4,第一滑道4远离振动盘2的一端设置传动导轮5,传动导轮5远离第一滑道4的一侧倾斜设置第二滑道6,第二滑道6远离传动导轮5的一端用于连通下一道制造工序。 As shown in Figure 1, the transmission device of the present utility model includes a workbench 1, on which a vibrating plate 2 for holding materials is arranged, and between the vibrating plate 2 and the workbench 1 is set for vibrating the vibrating plate 2 The vibrating plate power unit 3, one side of the vibrating plate 2 is obliquely provided with the first slideway 4 connected with the vibrating plate 2, and the end of the first slideway 4 away from the vibrating plate 2 is provided with a transmission guide wheel 5, and the transmission guide wheel 5 is far away from the vibrating plate 2. One side of the first slideway 4 is obliquely provided with a second slideway 6 , and the end of the second slideway 6 away from the transmission guide wheel 5 is used to communicate with the next manufacturing process.
第一滑道4的宽度和第二滑道6的宽度均与单个物料的长度相匹配,传动导轮5的高度低于振动盘2的高度,第二滑道6靠近传动导轮5的一端的高度低于传动导轮5的高度且高于第二滑道6远离传动导轮5的一端。 The width of the first slideway 4 and the width of the second slideway 6 both match the length of a single material, the height of the transmission guide wheel 5 is lower than the height of the vibrating plate 2, and the second slideway 6 is close to one end of the transmission guide wheel 5 The height is lower than the height of the driving guide wheel 5 and higher than the end of the second slideway 6 away from the driving guide wheel 5 .
传动导轮5包括与导轮动力装置连接的导轮轴51,导轮轴51的表面沿其周向均匀分布至少三个用于装卡来自第一滑道4的物料的挡料块52,相邻两个挡料块52之间的距离与单个物料的尺寸相匹配,在本实施例中,导轮轴51的表面沿其轴线均匀分布五个挡料块52,每个挡料块52上具有沿导轮轴51顺时针转动方向凹陷的兜料槽521,在本实施例中,兜料槽521为圆弧形凹槽,当然,兜料槽521不限于为圆弧形凹槽,还可以为方形凹槽或者异形凹槽。 The transmission guide wheel 5 includes a guide wheel shaft 51 connected with the guide wheel power device, and the surface of the guide wheel shaft 51 is evenly distributed along its circumference at least three material stoppers 52 for holding the material from the first slideway 4, adjacent to each other. The distance between the two stop blocks 52 matches the size of a single material. In this embodiment, the surface of the guide wheel shaft 51 is evenly distributed along its axis with five stop blocks 52, and each stop block 52 has a The pocket trough 521 that is sunken in the clockwise rotation direction of the guide wheel shaft 51, in this embodiment, the pocket pocket 521 is an arc-shaped groove, of course, the pocket pocket 521 is not limited to an arc-shaped groove, and can also be a square Grooves or shaped grooves.
还包括控制器,控制器分别与导轮动力装置以及振动盘动力装置3连接。第一滑道4远离振动盘2的一端活动铰接传动挡块7,传动挡块7的一端与第一滑道4通过转轴8转动连接,传动挡块7的另一端悬空并延伸至导轮轴51上的相邻两个挡料块52之间。 A controller is also included, and the controller is respectively connected with the guide wheel power device and the vibrating disk power device 3 . One end of the first slideway 4 away from the vibrating plate 2 is articulated with the transmission stopper 7, one end of the transmission stopper 7 is connected to the first slideway 4 through the rotating shaft 8, and the other end of the transmission stopper 7 is suspended and extends to the guide wheel shaft 51 Between two adjacent block blocks 52 on the top.
于本实施例中,此传动装置用于传送瓶子9,第一滑道4和第二滑道6的宽度均等于单个瓶子9的长度。 In this embodiment, the transmission device is used for conveying bottles 9 , and the widths of the first slideway 4 and the second slideway 6 are both equal to the length of a single bottle 9 .
控制器控制振动盘2振动,振动盘2中的瓶子9被自动送入至第一滑道4内,瓶子9由于重力作用滚入到传动导轮5的两个挡料块52之间,当下一道工序需要瓶子9时,制器控制导轮动力装置工作,导轮动力装置控制导轮轴51顺时针转动72°,将落在两挡料块52之间的一个瓶子9带动顺时针旋转,脱离第一滑道4的落料口,而相邻挡料块52将传动挡块7顶起,防止第一滑道4内的瓶子9滑出第一滑道4,控制器控制导轮动力装置继续工作,导轮动力装置继续控制导轮轴51再次顺时针转动72°,将两挡料块52之间的瓶子9送入到第二滑道6内,第二滑道6将此瓶子9送入到下一道工序进行下一步工作,如此往复循环,即可实现瓶子9的定量输送。 The controller controls the vibrating plate 2 to vibrate, and the bottle 9 in the vibrating plate 2 is automatically sent into the first slideway 4, and the bottle 9 rolls into between the two stoppers 52 of the transmission guide wheel 5 due to the action of gravity. When a process needs a bottle 9, the controller controls the guide wheel power device to work, and the guide wheel power device controls the guide wheel shaft 51 to rotate clockwise by 72°, and a bottle 9 falling between the two stop blocks 52 will be driven to rotate clockwise to break away from the The blanking opening of the first slideway 4, and the adjacent stop block 52 lifts the transmission stopper 7 to prevent the bottle 9 in the first slideway 4 from slipping out of the first slideway 4, and the controller controls the guide wheel power device Continue to work, the guide wheel power device continues to control the guide wheel shaft 51 to rotate clockwise 72° again, and the bottle 9 between the two stoppers 52 is sent into the second slideway 6, and the second slideway 6 sends the bottle 9 enter the next process to carry out the next step, so the reciprocating cycle can realize the quantitative delivery of the bottle 9.
如图2至图6所示,其为本实用新型中的清扫除尘装置10的结构示意图,其包括喷雾系统、模块清扫系统、除尘系统和自动控制系统,喷雾系统包括由喷淋泵102提供动力的喷雾装置,喷雾装置开口位于模块清扫系统的上方;模块清扫系统包括内部固定有贮尘槽109的除尘箱119,除尘系统包括布袋式除尘器112、轴流风机118和与布袋式除尘器连通的净气室117,净气室内设置集尘过滤装置113,净气室的出口与轴流风机118管路连接。除尘箱通过风道120与除尘系统的布袋式除尘器112相连。喷雾系统包括储液罐101、喷淋泵102、阀门103及 开口于模块清扫系统顶端的喷雾装置104组成。阀门用于控制储液罐中液体的喷淋,储液罐中的液体为水或具有能够降低灰尘与催化剂间固-固张力功能的松散剂,喷雾装置主要由喷嘴或流化器组成,为常规装置。喷淋泵102的开闭通过自动控制系统进行控制。喷淋时储液罐中的液体经过与阀门103相连的管道通过喷雾装置104在催化剂模块107上方进行喷淋。所述喷雾系统在模块清扫系统完成对催化剂模块初步清扫后,将储液罐中的液体经过与阀门相连的管道通过喷雾装置在催化剂模块上方进行喷淋清洗。 As shown in Fig. 2 to Fig. 6, it is the structure schematic diagram of cleaning and dust removal device 10 in the utility model, and it comprises spraying system, module cleaning system, dust removal system and automatic control system, and spraying system comprises that is powered by spray pump 102 The spraying device, the opening of the spraying device is located above the module cleaning system; the module cleaning system includes a dust removal box 119 with a dust storage tank 109 fixed inside, and the dust removal system includes a bag filter 112, an axial flow fan 118 and is connected to the bag filter. The clean air chamber 117 is provided with a dust collecting and filtering device 113, and the outlet of the clean air chamber is connected with an axial fan 118 pipeline. The dust removal box is connected with the bag type dust collector 112 of the dust removal system through the air duct 120 . The spraying system comprises a liquid storage tank 101, a spray pump 102, a valve 103 and a spraying device 104 opening on the top of the module cleaning system to form. The valve is used to control the spraying of the liquid in the liquid storage tank. The liquid in the liquid storage tank is water or a loose agent that can reduce the solid-solid tension between the dust and the catalyst. The spray device is mainly composed of a nozzle or a fluidizer. Conventional device. The opening and closing of the spray pump 102 is controlled by an automatic control system. During spraying, the liquid in the liquid storage tank is sprayed above the catalyst module 107 through the spraying device 104 through the pipeline connected with the valve 103 . After the module cleaning system completes the preliminary cleaning of the catalyst module, the spray system sprays and cleans the liquid in the liquid storage tank above the catalyst module through the pipeline connected with the valve through the spray device.
模块清扫系统包括传送装置110、筛网状载物台111、顶部为斜面的贮尘槽109、带有通孔针106的伸缩机械手105、空压机114和废液口108。传送装置10的传送面与地面呈斜角,传送装置10的顶端与筛网状载物台11相连,用于承载催化剂模块的筛网状载物台下方为封闭的除尘箱119,除尘箱内固定有顶部为斜面的贮尘槽109,贮尘槽109的斜面与筛网状载物台111的筛网位置上下对应,贮尘槽109斜面的底部与设置于除尘箱底部的废液口108相邻,除尘箱与布袋式除尘器112之间通过风道120连接。筛网状载物台上方为伸缩机械手,通孔针106通过一个水平设置的集合柄123设置在伸缩机械手105的下方,集合柄上设有分别与空压机114和通孔针相连通的排气孔。排气孔与外部的空压机相连,可在机械通孔前完成对催化剂模块的清扫。 The modular cleaning system includes a conveying device 110 , a screen-like stage 111 , a dust storage tank 109 with a sloped top, a telescopic manipulator 105 with through-hole needles 106 , an air compressor 114 and a waste liquid port 108 . The conveying surface of the conveying device 10 is at an oblique angle to the ground, and the top of the conveying device 10 is connected to the mesh-shaped object platform 11, and the bottom of the mesh-shaped object stage used to carry the catalyst module is a closed dust removal box 119, inside the dust removal box A dust storage tank 109 with a sloped top is fixed, and the slope of the dust storage tank 109 corresponds up and down to the position of the screen of the screen-like stage 111. Adjacent, the dust box is connected to the bag filter 112 through an air duct 120 . The telescopic manipulator is above the screen-shaped stage, and the through-hole needle 106 is arranged below the telescopic manipulator 105 through a horizontally arranged collection handle 123. The collection handle is provided with a row connected to the air compressor 114 and the through-hole needle respectively. stomata. The exhaust hole is connected with an external air compressor, and the cleaning of the catalyst module can be completed before the mechanical passage.
传送装置110将待清扫的催化剂模块107传送至筛网状载物台111上,模块上的灰尘可通过筛网状载物台11上的筛网进入贮尘槽109中,所述的贮尘槽可收集机械通孔、吹扫、喷淋清洗后掉落所述筛网状载物台上的灰尘及废液,伸缩机械手带动通孔针完成对催化剂模块的吹扫及机械通孔过程,同时通孔针的间距调节、排气孔所连空压机的开关可通过自动控制系统进行调节。 The conveying device 110 transmits the catalyst module 107 to be cleaned to the screen-shaped object platform 111, and the dust on the module can enter the dust storage tank 109 through the screen on the screen-mesh-shaped object platform 11, and the described dust storage The groove can collect the dust and waste liquid falling on the screen-like stage after mechanical through-hole, purging, spray cleaning, and the telescopic manipulator drives the through-hole needle to complete the purging of the catalyst module and the mechanical through-hole process. At the same time, the spacing adjustment of the through-hole needles and the switch of the air compressor connected to the exhaust hole can be adjusted through the automatic control system.
如图5所示,除尘系统的核心为布袋式除尘器112,另外包括灰斗121、带有回转阀116的物料出口、集尘过滤装置113、轴流风机118和脉冲阀门115。灰斗位于布袋式除尘器下方,灰斗底部与带有回转阀116的物料出口相连。布袋式除尘器的顶部安装有净气室117,净气室内设置集尘过滤装置113,净气室的出口与轴流风机118管路连接,净气室的另一端安装有脉冲阀门15,脉冲阀门与空压机相连,由空压机的压缩空气对布袋式除尘器和净气室进行反吹清理。轴流风机118使模块清扫系统内的灰尘通过风道120进入除尘系统,经过集尘过滤装置113及布袋式除尘器的反吹最终使物料进入灰斗121,最后通过回转阀116的开合将灰尘排出系统,完成整个清扫除尘过程。 As shown in FIG. 5 , the core of the dust removal system is the bag filter 112 , which also includes an ash hopper 121 , a material outlet with a rotary valve 116 , a dust collection filter 113 , an axial fan 118 and a pulse valve 115 . The ash hopper is located below the bag filter, and the bottom of the ash hopper is connected to the material outlet with a rotary valve 116 . A clean air chamber 117 is installed on the top of the bag-type dust collector, and a dust collection and filtering device 113 is installed in the clean air chamber. The valve is connected with the air compressor, and the compressed air from the air compressor is used to blow back the bag filter and the clean air chamber. The axial flow fan 118 makes the dust in the module cleaning system enter the dust removal system through the air duct 120, and after the back blowing of the dust collection filter device 113 and the bag filter, the material enters the ash hopper 121, and finally the dust is discharged by the opening and closing of the rotary valve 116. The dust discharge system completes the entire cleaning and dust removal process.
轴流风机为整个系统提供负压,同时使贮尘槽中的灰尘进入除尘系统中。集尘过滤装置防止灰尘通过出口排出有利于减少工作场所扬尘,灰斗收集除尘系统收集的灰尘并通过物料出口排出系统外。 The axial flow fan provides negative pressure for the whole system, and at the same time makes the dust in the dust storage tank enter the dust removal system. The dust collection and filtering device prevents dust from being discharged through the outlet, which is beneficial to reduce dust in the workplace. The dust hopper collects the dust collected by the dust removal system and discharges it out of the system through the material outlet.
下面描述利用本实用新型的清扫除尘系统所进行的催化剂模块清扫除尘步骤:打开除尘系统的轴流风机,同时通过自动控制系统开启除尘系统的布袋式除尘器。开启传送装置110将待吹扫催化剂模块通过传送带输送至筛网状载物台111上。通过自动控制系统调整伸缩机械手105与通孔针106的距离并使通孔针上下移动,同时打开空压机114,借助压缩空气对催化剂模块进行吹扫。关 闭除尘系统,打开喷雾系统的阀门103同时通过自动控制系统开启喷淋泵102,使喷淋液通过喷雾装置104喷洒在催化剂模块上,喷淋废液通过筛网状载物台11流入贮尘槽109中,打开废液口108,将喷淋废液排出。将清扫完的催化剂模块从模块清扫系统移出。 The cleaning and dedusting steps of the catalyst module performed by the cleaning and dedusting system of the present invention are described below: open the axial flow fan of the dedusting system, and simultaneously open the bag type dust collector of the dedusting system through the automatic control system. The conveying device 110 is turned on and the catalyst module to be purged is conveyed to the mesh-shaped stage 111 through the conveying belt. The distance between the telescopic manipulator 105 and the through-hole needle 106 is adjusted by the automatic control system, and the through-hole needle is moved up and down. At the same time, the air compressor 114 is turned on, and the catalyst module is purged by compressed air. Close the dedusting system, open the valve 103 of the spray system and open the spray pump 102 through the automatic control system at the same time, so that the spray liquid is sprayed on the catalyst module through the spray device 104, and the spray waste liquid flows into the storage through the screen-like carrier 11. In the dust tank 109, the waste liquid port 108 is opened to discharge the spray waste liquid. Remove the cleaned catalyst module from the module cleaning system.
如图7所示,改向机构1,所述改向机构20包括电机201、轴承204、曲轴202和改向件203,所述电机201设有轴杆,所述曲轴202的两端设置为直杆,中间设置为弧形曲杆,所述曲轴202的一端与轴杆可拆卸固定连接,其另一端与轴承14的内圈可拆卸固定连接,所述改向件203设有通孔2031,所述通孔2031的内壁上设有至少一个凸块3013,所述改向件203套设在曲轴202上,所述改向件2031与传送机构连接。 As shown in Figure 7, redirecting mechanism 1, described redirecting mechanism 20 comprises motor 201, bearing 204, crankshaft 202 and redirecting member 203, and described motor 201 is provided with shaft rod, and the two ends of described crankshaft 202 are arranged as Straight rod, the middle is arranged as an arc-shaped curved rod, one end of the crankshaft 202 is detachably and fixedly connected to the shaft rod, and the other end is detachably and fixedly connected to the inner ring of the bearing 14, and the redirecting member 203 is provided with a through hole 2031 , the inner wall of the through hole 2031 is provided with at least one protrusion 3013, the redirecting member 203 is sleeved on the crankshaft 202, and the redirecting member 2031 is connected with the transmission mechanism.
通过采用上述技术方案,所述曲轴202与转轴可拆卸连接,所述电机201转动带动曲轴202做周向旋转,所述曲轴202在周向旋转时,所述弧形曲杆与凸块2013碰撞,所述凸块2013的高度决定改向件203抖动的幅度,所述改向件203与传送机构连接,带动传动机构抖动。 By adopting the above technical solution, the crankshaft 202 is detachably connected to the rotating shaft, and the rotation of the motor 201 drives the crankshaft 202 to rotate in the circumferential direction. When the crankshaft 202 rotates in the circumferential direction, the arc-shaped crank rod collides with the bump 2013 , the height of the bump 2013 determines the vibration amplitude of the redirecting member 203, and the redirecting member 203 is connected with the transmission mechanism to drive the transmission mechanism to vibrate.
本实用新型还包括一报警装置301,所述第一滑道上沿传送方向依次设有:用于向所述报警装置提供触发信号的第一传感器302;用于向所述驱动机构提供停机信号的第二传感器302,所述报警装置为安装在机架上的报警灯以及蜂鸣器。 The utility model also includes an alarm device 301, and the first slideway is provided in turn along the conveying direction: a first sensor 302 for providing a trigger signal to the alarm device; a first sensor 302 for providing a shutdown signal to the driving mechanism The second sensor 302, the alarm device is an alarm lamp and a buzzer installed on the frame.
通过第一传感器检测经过其的瓶子,当瓶子通过的速度小于预先设定的速度,则触发第一传感器302,第一传感器302即发出报警信号,通知工作人员进行处理,如果未能及时处理,瓶子继续沿传滑道传送运动至触发第二传感器303,第二传感器303即发出停机信号。 The first sensor detects the bottles passing through it. When the passing speed of the bottle is lower than the preset speed, the first sensor 302 is triggered, and the first sensor 302 sends an alarm signal to notify the staff to deal with it. If it fails to deal with it in time, The bottle continues to move along the transmission slide until the second sensor 303 is triggered, and the second sensor 303 sends a shutdown signal.
如图8、9所示,润滑装置40在本实施例中是挂设于振动盘动力装置3处,并在内部具有一储油空间45、一邻接储油空间45的动力室46,以及一邻接储油空间45的控制室47,其中的储油空间45用以储存一润滑剂且被一第一隔板48区分成相互连通的一主油室452及一副油室454,副油室454经由一注油孔456(如图2所示)与振动盘动力装置的表面相通,控制室47在本实施例中被一第二隔板49区分成一控制槽472及一滚动槽474,并于滚动槽474内设有一滚动件62(在此以钢珠为例);马达42固定于油箱41的动力室46内,并具有一伸入副油室454内的驱动轴422;导油件43连接于马达42的驱动轴422且位于油箱41的副油室454内,使得导油件43能够藉由马达42的驱动而转动,并在转动的过程中将润滑剂从副油室454经由注油孔456导引至长轴20的表面;控制器44固定于油箱41的控制室47的控制槽472内且电性连接马达42,用以控制马达42的启动或停止。 As shown in Figures 8 and 9, the lubricating device 40 is hung on the vibrating plate power device 3 in this embodiment, and has an oil storage space 45, a power chamber 46 adjacent to the oil storage space 45, and a Adjacent to the control chamber 47 of the oil storage space 45, the oil storage space 45 is used to store a lubricant and is divided into a main oil chamber 452 and an auxiliary oil chamber 454 communicated with each other by a first partition 48, the auxiliary oil chamber 454 communicates with the surface of the vibrating plate power unit through an oil injection hole 456 (as shown in Figure 2). A rolling element 62 is provided in the rolling groove 474 (here, a steel ball is used as an example); the motor 42 is fixed in the power chamber 46 of the fuel tank 41, and has a drive shaft 422 extending into the auxiliary oil chamber 454; the oil guide 43 is connected to The drive shaft 422 of the motor 42 is located in the auxiliary oil chamber 454 of the oil tank 41, so that the oil guide 43 can be rotated by the drive of the motor 42, and the lubricant is passed from the auxiliary oil chamber 454 through the oil injection hole during the rotation. 456 is guided to the surface of the long shaft 20; the controller 44 is fixed in the control groove 472 of the control chamber 47 of the oil tank 41 and electrically connected to the motor 42 to control the start or stop of the motor 42.
传感器60在本实施例中为一近接开关,在安装时是固定第二隔板49而位于油箱41的控制室47内,并且电性连接控制器44,用以感测滚动件62的位置变化,并根据所感测到的位置变化而产生一作动讯号至控制器44。 In this embodiment, the sensor 60 is a proximity switch. When installed, the second partition 49 is fixed and located in the control room 47 of the fuel tank 41, and is electrically connected to the controller 44 to sense the position change of the rolling member 62. , and generate an actuation signal to the controller 44 according to the sensed position change.
经由上述结构可知,如图5所示,当振动盘动力装置转动时,润滑单元50也会跟着振动盘动力装置移动,使得滚动件62会在滚动槽574内自由滚动,此时的 传感器60便会开始感测滚动件62的位置变化,当传感器60感测到滚动件62时会产生作动讯号至控制器54,接着控制器54会根据所接收到的作动讯号控制马达52启动,使得导油件53能够由马达52的驱动而将储油空间55内的润滑剂经由注油孔556输送至振动盘动力装置的表面,以达到自动润滑的效果。一旦传感器60感测不到滚动件62时则会中断作动讯号的发送,此时的控制器54会因为接收不到作动讯号而控制马达52停止运转,导油件53也就会停止供输动作。因此,当滚动件62不停地滚动时,亦即振动盘动力装置在转动时,传感器60会产生间断性的作动讯号至控制器54,使控制器54能够控制润滑单元50进行供油动作。传感器便会产生该作动讯号至该控制器,接着该控制器会根据该作动讯号控制该马达启动,使该导引件通过该马达的驱动而将该润滑剂经由该注油孔导引至该长轴的表面,以达到自动润滑的效果。 It can be seen from the above structure that, as shown in Figure 5, when the vibrating disc power unit rotates, the lubricating unit 50 will also move with the vibrating disc power unit, so that the rolling member 62 will roll freely in the rolling groove 574, and the sensor 60 at this time will be It will start to sense the position change of the rolling element 62, and when the sensor 60 senses the rolling element 62, it will generate an actuation signal to the controller 54, and then the controller 54 will control the motor 52 to start according to the received actuation signal, so that The oil guiding member 53 can be driven by the motor 52 to deliver the lubricant in the oil storage space 55 to the surface of the vibrating plate power device through the oil injection hole 556 to achieve the effect of automatic lubrication. Once the sensor 60 fails to detect the rolling element 62, the transmission of the actuation signal will be interrupted. At this time, the controller 54 will control the motor 52 to stop running because the actuation signal cannot be received, and the oil guide 53 will also stop supplying the oil. lose action. Therefore, when the rolling member 62 keeps rolling, that is, when the vibrating plate power device is rotating, the sensor 60 will generate intermittent actuation signals to the controller 54, so that the controller 54 can control the lubricating unit 50 to perform the oil supply operation . The sensor will generate the actuation signal to the controller, and then the controller will control the motor to start according to the actuation signal, so that the guide is driven by the motor to guide the lubricant through the oil hole to the The surface of the long axis, in order to achieve the effect of automatic lubrication.
以上所述仅为本实用新型的较佳实施例而已,并不用以限制本实用新型,凡在本实用新型的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本实用新型的保护范围之内。 The above descriptions are only preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present utility model shall be included in this utility model. within the scope of protection of utility models.
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| CN110294287A (en) * | 2019-07-09 | 2019-10-01 | 宁夏天地奔牛实业集团有限公司 | A kind of non-maintaining or low-maintenance self-lubricating sprocket shaft group |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
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| CN110294287A (en) * | 2019-07-09 | 2019-10-01 | 宁夏天地奔牛实业集团有限公司 | A kind of non-maintaining or low-maintenance self-lubricating sprocket shaft group |
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