CN207872679U - Supersonic wave cleaning machine - Google Patents

Supersonic wave cleaning machine Download PDF

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Publication number
CN207872679U
CN207872679U CN201721619885.9U CN201721619885U CN207872679U CN 207872679 U CN207872679 U CN 207872679U CN 201721619885 U CN201721619885 U CN 201721619885U CN 207872679 U CN207872679 U CN 207872679U
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cleaning
case
water
supersonic wave
rinsing
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何小锋
杨林飞
黄旭环
潘发达
保罗·帕里希
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ZHEJIANG CHANGCHENG COMMUTATOR CO Ltd
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ZHEJIANG CHANGCHENG COMMUTATOR CO Ltd
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Abstract

The utility model discloses a kind of supersonic wave cleaning machines, it is advantageous that cleaning efficiency higher.A kind of supersonic wave cleaning machine, including rack, feed end and discharge end are provided in rack, in rack drying unit is equipped with close to the side of discharge end, it is disposed with cleaning device and rinsing device in rack between feed end and drying unit and from charging to discharging direction, the conveying device that conveying material is passed through cleaning device, rinsing device, drying unit by feed end successively is provided between feed end and discharge end.It conveys commutator segment and passes through the greasy dirt that cleaning device cleaning removes commutator segment surface successively, then rinse the cleaning solution on removal surface by rinsing device, then dried and removed water by drying unit.Pass through the disposable all processes for completing to clean to drying of the supersonic wave cleaning machine, treatment effeciency higher.

Description

超声波清洗机ultrasonic cleaner

技术领域technical field

本实用新型涉及一种清洗机,特别涉及一种超声波清洗机。The utility model relates to a cleaning machine, in particular to an ultrasonic cleaning machine.

背景技术Background technique

换向片在生产加工的过程中会在表面残留油污,为了避免油污对最后生产出来的换向器质量产生影响,需要对换向片表面的油污进行清洗。During the production and processing of the commutator segment, oil will remain on the surface. In order to avoid the impact of oil on the quality of the final commutator produced, it is necessary to clean the oil on the surface of the commutator segment.

授权公告号为CN100487990C的发明专利公开了一种换向器的制造方法。该发明专利中清洗换向片是通过将换向片放置在振动清洗机中振动清洗来出去换向片表面的油污。The patent of invention whose authorized notification number is CN100487990C discloses a manufacturing method of a commutator. In this invention patent, the cleaning of the commutator segment is to remove the oil stain on the surface of the commutator segment by placing the commutator segment in a vibration cleaning machine for vibration cleaning.

但是该发明专利存在以下问题:在通过振动清洗机来清洗换向片的时候清洗效率较低,在清洗完毕之后必须将换向片再放入清水中清洗才能清洗干净。But this invention patent has the following problems: the cleaning efficiency is low when the commutator is cleaned by a vibration cleaning machine, and the commutator must be put into clear water to clean after cleaning.

实用新型内容Utility model content

本实用新型的目的是提供一种超声波清洗机,其优势在于清洗效率更高。The purpose of the utility model is to provide an ultrasonic cleaning machine, which has the advantage of higher cleaning efficiency.

本实用新型的上述技术目的是通过以下技术方案得以实现的:一种超声波清洗机,包括机架,机架上设置有进料端和出料端,机架上靠近出料端的一侧设有烘干装置,机架上位于进料端和烘干装置之间且由进料向出料方向依次设置有清洗装置和漂洗装置,进料端和出料端之间设置有输送物料由进料端依次经过清洗装置、漂洗装置、烘干装置的输送装置。The above-mentioned technical purpose of the utility model is achieved through the following technical solutions: an ultrasonic cleaning machine, including a frame, a feed end and a discharge end are arranged on the frame, and a side close to the discharge end is provided on the frame Drying device, the frame is located between the feeding end and the drying device, and the cleaning device and the rinsing device are arranged sequentially from the feeding to the discharging direction, and the conveying material is provided between the feeding end and the discharging end. The end passes through the conveying device of the cleaning device, the rinsing device and the drying device in turn.

通过采用上述技术方案,输送换向片依次经过清洗装置清洗除去换向片表面的油污,再通过漂洗装置漂洗去除表面的清洗液,再通过烘干装置烘干除水。通过该超声波清洗机一次性完成清洗到烘干的全部过程,处理效率更高。By adopting the above-mentioned technical scheme, the conveying commutator segments are cleaned by the cleaning device to remove oil stains on the surface of the commutator segments, then rinsed by the rinsing device to remove the cleaning liquid on the surface, and then dried by the drying device to remove water. The entire process from cleaning to drying is completed at one time by the ultrasonic cleaning machine, and the processing efficiency is higher.

本实用新型进一步设置为:所述清洗装置包括清洗箱、设于清洗箱内的超声波清洗机构,清洗箱朝向进料端的一侧设有清洗进料口、朝向出料端的一侧设有清洗出料口,清洗箱的箱底向下凹设有容液槽,超声波清洗机构设于与容液槽相对应的位置处;The utility model is further configured as follows: the cleaning device includes a cleaning box and an ultrasonic cleaning mechanism arranged in the cleaning box, the side of the cleaning box facing the feeding end is provided with a cleaning feeding port, and the side facing the discharging end is provided with a cleaning outlet The material opening, the bottom of the cleaning box is concavely provided with a liquid tank, and the ultrasonic cleaning mechanism is located at a position corresponding to the liquid tank;

所述漂洗装置包括漂洗箱、设于漂洗箱内的超声波清洗机构,漂洗箱朝向进料端的一侧设有漂洗进料口、朝向出料端的一侧设有漂洗出料口,漂洗箱的箱底向下凹设有容液槽,超声波清洗机构设于与容液槽相对应的位置处。The rinsing device includes a rinsing box and an ultrasonic cleaning mechanism arranged in the rinsing box. The side of the rinsing box facing the feed end is provided with a rinsing inlet, and the side facing the discharge end is provided with a rinsing outlet. The bottom of the rinsing box is A liquid holding tank is recessed downward, and the ultrasonic cleaning mechanism is arranged at a position corresponding to the liquid holding tank.

通过采用上述技术方案,换向片从清洗进料口输送进入容液槽内,之后通过超声波清洗机构产生超声波,加速清洗去除换向片表面的油污;之后继续输送换向片至漂洗箱内溶液槽的位置,通过超声波清洗机构清洗快速去除表面的清洗液。By adopting the above technical scheme, the commutator piece is conveyed from the cleaning feed inlet into the liquid tank, and then ultrasonic waves are generated by the ultrasonic cleaning mechanism to accelerate cleaning and remove the oil on the surface of the commutator piece; after that, the commutator piece is continuously transported to the solution in the rinsing box The position of the tank is cleaned by an ultrasonic cleaning mechanism to quickly remove the cleaning solution on the surface.

本实用新型进一步设置为:所述超声波清洗机构包括超声波清洗架、安装于超声波清洗架上的上超声波发生器和下超声波发生器,上超声波发生器和下超声波发生器之间具有一定的间隔且下超声波发生器设于容液槽内的液位以下;所述输送装置输送物料从上超声波发生器和下超声波发生器之间经过。The utility model is further set as: the ultrasonic cleaning mechanism includes an ultrasonic cleaning frame, an upper ultrasonic generator and a lower ultrasonic generator installed on the ultrasonic cleaning frame, and there is a certain interval between the upper ultrasonic generator and the lower ultrasonic generator. The lower ultrasonic generator is arranged below the liquid level in the liquid holding tank; the conveying device conveys materials passing between the upper ultrasonic generator and the lower ultrasonic generator.

通过采用上述技术方案,输送装置输送换向片的时候从上超声波发生器和下超声波发生器之间的位置经过,通过两侧的超声波配合无死角清洗。By adopting the above technical solution, the conveying device passes through the position between the upper ultrasonic generator and the lower ultrasonic generator when conveying the commutator segment, and cleans without dead ends through the ultrasonic waves on both sides.

本实用新型进一步设置为:所述清洗箱内靠近清洗进料口的一侧或/和靠近清洗出料口的一侧设有喷淋清洗机构,喷淋清洗机构与清洗出料口之间设有定向吹风机构;The utility model is further configured as follows: a spray cleaning mechanism is provided on the side of the cleaning box close to the cleaning material inlet or/and on the side close to the cleaning material outlet, and a cleaning mechanism is provided between the spray cleaning mechanism and the cleaning material outlet. There is a directional blower mechanism;

所述漂洗箱内靠近漂洗出料口的一侧设有喷淋清洗机构,喷淋清洗机构与清洗出料口之间设有摇摆吹风机构。A spray cleaning mechanism is provided on the side of the rinsing box close to the rinsing discharge port, and a swing blowing mechanism is provided between the spray cleaning mechanism and the cleaning discharge port.

通过采用上述技术方案,清洗之后,通过喷淋清洗机构和吹风机构配合除去换向片表面的清洗液;漂洗之后通过喷淋清洗机构和摆动吹风机构来去除换向片表面的清水,使得之后更容易烘干。By adopting the above technical scheme, after cleaning, the cleaning liquid on the surface of the commutator is removed through the cooperation of the spray cleaning mechanism and the blowing mechanism; Easy to dry.

本实用新型进一步设置为:所述喷淋清洗机构包括喷淋箱以及设于喷淋箱箱顶或/和箱底上的喷淋管,喷淋管上设有朝向输送装置输送的物料喷液的喷头;喷淋箱朝向进料端的一侧设有喷淋进料口、朝向出料端的一侧设有喷淋出料口,喷淋进料口和喷淋出料口的上侧设有多个竖向设置的遮挡条,相邻遮挡条的相邻侧边相互靠近或者抵接。The utility model is further configured as follows: the spray cleaning mechanism includes a spray box and a spray pipe arranged on the top or/and bottom of the spray box, and the spray pipe is provided with a device for spraying liquid towards the material transported by the conveying device. Nozzle; the side of the spray box facing the feed end is provided with a spray feed port, the side facing the discharge end is provided with a spray discharge port, and the upper side of the spray feed port and the spray discharge port is provided with multiple There are two vertically arranged shielding strips, and the adjacent sides of adjacent shielding strips are close to or abutted against each other.

通过采用上述技术方案,通过喷淋管和喷淋头向输送装置输送的物料喷淋清洗,同时在喷淋进料口和喷淋出料口设置相互靠近或抵接的遮挡条来防止水喷出来。By adopting the above technical scheme, the materials transported to the conveying device through the spray pipe and the spray head are sprayed and cleaned, and at the same time, shielding strips close to or abutting against each other are set at the spray inlet and the spray outlet to prevent water spraying. come out.

本实用新型进一步设置为:所述定向吹风机构包括上风吹组件和下风吹组件;The utility model is further configured as follows: the directional blowing mechanism includes an upwind blowing assembly and a downwind blowing assembly;

上风吹组件包括上吹风泵、与上吹风泵的出风口连接的上出风管,上出风管的下侧面上开设有吹风孔;The upper wind blowing assembly includes an upper blowing pump, an upper air outlet pipe connected to the air outlet of the upper air blowing pump, and a blowing hole is opened on the lower side of the upper air outlet pipe;

下风吹组件包括下吹风泵、与下吹风泵出风口连接的下引风管,下引风管的出风口处分叉连接有两个下出风管,两个下出风管的上侧面上开设有吹风孔;输送装置输送物料从上出风管和下出风管之间经过。The downwind blowing assembly includes a downblowing pump and a downflow pipe connected to the air outlet of the downflow pump. A blowing hole is provided; the conveying device conveys materials passing between the upper air outlet pipe and the lower air outlet pipe.

通过采用上述技术方案,上吹风泵产生气流后通过上出风管引风从吹风孔中吹出。下吹风泵产生的气流通过下引风管进入两个下出风管中,最后通过吹风孔吹出。上下两道气流共同吹向从中间的输送装置上输送的换向片,去除换向片上的清洗液或水。By adopting the above technical scheme, the upper blowing pump generates the airflow and blows it out from the blowing hole through the upper air outlet pipe to guide the air. The airflow produced by the lower blowing pump enters the two lower air outlet pipes through the lower air induction pipe, and finally blows out through the blowing holes. The upper and lower air streams blow together to the commutator segment conveyed from the conveying device in the middle to remove the cleaning fluid or water on the commutator segment.

本实用新型进一步设置为:所述摇摆吹风机构包括除水吹风泵、与除水吹风泵出风口之间通过除水引风管连接的上除水出风组件和下除水出风组件;The utility model is further configured as follows: the swing blowing mechanism includes a dewatering blowing pump, an upper dewatering air outlet assembly and a lower dewatering air outlet assembly connected to the air outlet of the dewatering blowing pump through a dewatering air duct;

上除水出风组件包括上除水支架、滑动安装于上除水支架上的滑动安装架,滑动安装架上的两侧分别安装有上除水出风管,两上除水出风管上分别设有朝下设置的上除水吹风口;滑动安装架由设于机架上的动力组件驱动。The upper dewatering and air outlet assembly includes an upper dewatering bracket and a sliding installation frame slidably installed on the upper dewatering bracket. Both sides of the sliding mounting frame are respectively installed with an upper dewatering air outlet pipe. The upper dewatering air outlets are respectively provided facing downwards; the sliding installation frame is driven by the power assembly arranged on the frame.

通过采用上述技术方案,动力组件带动上除水出风组件运动,滑动安装架沿着上除水支架来回运动。这时候上除水吹风管也跟随着来回运动吹除换向片表面的水或清洗液。By adopting the above technical solution, the power component drives the upper dewatering air outlet component to move, and the sliding installation frame moves back and forth along the upper dewatering bracket. At this time, the upper dewatering blower also blows off the water or cleaning fluid on the surface of the commutator along with the back and forth movement.

本实用新型进一步设置为:所述动力组件包括驱动电机和传动杆,驱动电机的输出轴上固设有转盘,转盘上偏心设置有转动轴,滑动安装架上设有与转动轴轴线相平行的转动销,传动杆的一端与转动轴之间转动连接、另一端与转动销之间转动连接。The utility model is further set as follows: the power assembly includes a drive motor and a transmission rod, a turntable is fixed on the output shaft of the drive motor, a rotation shaft is eccentrically arranged on the turntable, and a shaft parallel to the axis of the rotation shaft is provided on the sliding mounting frame. The rotating pin is rotatably connected between one end of the transmission rod and the rotating shaft, and rotatably connected between the other end and the rotating pin.

通过采用上述技术方案,驱动电机带动转盘转动,在转盘转动的过程中带动传动杆运动,传动杆运动的过程中带动其中一根上出风管做往复运动,由于两根上出风管是通过滑动安装架连接在一起的,因此会随着一起运动。By adopting the above technical solution, the driving motor drives the turntable to rotate, and drives the transmission rod to move during the rotation of the turntable. During the movement of the transmission rod, one of the upper air outlet pipes is driven to reciprocate. Since the two upper air outlet pipes are installed by sliding The frame is connected together, so it will move with it.

本实用新型进一步设置为:所述机架的一侧设有位置分别与清洗箱和漂洗箱相对应的循环补水装置,循环补水装置包括循环补水箱、设于循环补水箱上两侧的回水口和抽液泵,回水口与相应的容液槽的一侧连通,抽液泵通过过滤净化器与相应的容液槽的另一侧连通;The utility model is further configured as follows: one side of the frame is provided with a circulating water replenishment device corresponding to the cleaning tank and the rinsing tank respectively, and the circulating water replenishing device includes a circulating water replenishing tank and return water ports located on both sides of the circulating water replenishing tank and the liquid pump, the water return port communicates with one side of the corresponding liquid tank, and the liquid pump communicates with the other side of the corresponding liquid tank through the filter purifier;

所述循环补水箱的中部设有过滤网,过滤网将循环补水箱分隔为次级过滤区以及过滤合格区,循环补水箱内位于次级过滤区的上侧位置设有初级过滤区,初级过滤区包括设于回水口下侧的过滤盘,抽液泵设于循环补水箱上与过滤合格区相对应的位置;The middle part of the circulating replenishing water tank is provided with a filter screen, and the filtering net divides the circulating replenishing water tank into a secondary filtering area and a qualified filtering area. The area includes a filter plate located on the lower side of the water return port, and the suction pump is located on the circulating water tank at a position corresponding to the qualified filtering area;

所述过滤网的上端设有自溢槽,自溢槽的两端分别与循环补水箱的两相对的内壁固定连接,循环补水箱上与自溢槽相对应的位置设有排液口;The upper end of the filter screen is provided with a self-overflow tank, and the two ends of the self-overflow tank are respectively fixedly connected with two opposite inner walls of the circulating water supply tank, and the position corresponding to the self-overflow tank on the circulating water supply tank is provided with a drain port;

所述次级过滤区的循环补水箱的内壁设有补水口,补水口上设有补水浮球阀。The inner wall of the circulating water supply tank in the secondary filter area is provided with a water supply port, and a water supply float valve is provided on the water supply port.

通过采用上述技术方案,水或清洗液进入循环补水装置时,首先通过初级过滤区的过滤盘进行初级过滤,过滤之后的水通过次级过滤区的过滤网进行过滤,再通过抽液泵将水或清洗液抽出输送到容液槽内。漂浮杂质进入自溢槽中通过排液口排放出去,在循环补水箱内的水位下降导致漂浮杂质无法排出时,补水浮球阀打开,补水口向循环补水装置内不是。By adopting the above technical scheme, when water or cleaning liquid enters the circulating water replenishment device, it firstly passes through the filter plate in the primary filter area for primary filtration, and the filtered water is filtered through the filter screen in the secondary filter area, and then the water is pumped out by the suction pump. Or the cleaning liquid is pumped out and delivered to the liquid holding tank. Floating impurities enter the self-overflow tank and are discharged through the discharge port. When the water level in the circulating water tank drops and the floating impurities cannot be discharged, the water replenishing float valve is opened, and the water replenishing port is not directed into the circulating water replenishing device.

本实用新型进一步设置为:所述输送装置包括链带和带动链带运动的动力机构。The utility model is further configured as follows: the conveying device includes a chain belt and a power mechanism for driving the chain belt to move.

通过采用上述技术方案,使用链带和动力机构作为输送装置,由于链带的滤水性能较好,因此在输送的过程中可以减少夹带的水和清洗液。By adopting the above technical solution, using the chain belt and the power mechanism as the conveying device, since the chain belt has better water filtration performance, the entrained water and cleaning liquid can be reduced during the conveying process.

综上所述,本实用新型的有益效果为:In summary, the beneficial effects of the utility model are:

1、在清洗装置除去换向片表面油污,在漂洗装置除去换向片表面清洗液,然后在烘干装置把换向片表面的水烘干,通过该超声波清洗机一次性完成清洗到烘干的全部过程,处理效率更高;1. Remove the oil on the surface of the commutator in the cleaning device, remove the cleaning liquid on the surface of the commutator in the rinsing device, and then dry the water on the surface of the commutator in the drying device, and use the ultrasonic cleaning machine to complete cleaning to drying at one time The whole process, the processing efficiency is higher;

2、输送装置输送换向片进入第一喷淋清洗机构中初步喷淋清洗,除去表面附着的杂物;之后继续输送换向片至容液槽中,通过第一超声波清洗机构除去换向片表面的油污;然后输送换向片至第二喷淋清洗机构中时,通过喷淋清洗表面的清洗液;最后输送换向片至定向吹风机构将换向片表面的清洗液吹除。2. The conveying device transports the commutator segment into the first spray cleaning mechanism for preliminary spray cleaning to remove the sundries attached to the surface; then continue to transport the commutator segment to the liquid tank, and remove the commutator segment through the first ultrasonic cleaning mechanism Oil stains on the surface; then when transporting the commutator piece to the second spray cleaning mechanism, spray the cleaning liquid on the surface; finally transport the commutator piece to the directional blowing mechanism to blow off the cleaning liquid on the surface of the commutator piece.

附图说明Description of drawings

图1是实施例的整体结构示意图;Fig. 1 is the overall structural representation of embodiment;

图2是实施例中清洗装置的剖视示意图;Fig. 2 is the sectional schematic diagram of cleaning device in the embodiment;

图3是实施例中清洗装置内第一喷淋清洗机构和第一超声波清洗机构的结构示意图;Fig. 3 is a schematic structural view of the first spray cleaning mechanism and the first ultrasonic cleaning mechanism in the cleaning device in the embodiment;

图4是图2中A处的放大图;Fig. 4 is the enlarged view of place A in Fig. 2;

图5是实施例中下风吹组件的结构示意图;Fig. 5 is a schematic structural view of the downwind blowing assembly in the embodiment;

图6是实施例中循环补水箱的结构示意图;Fig. 6 is a schematic structural view of a circulating water supply tank in an embodiment;

图7是实施例中循环补水箱的剖视示意图;Fig. 7 is a schematic cross-sectional view of a circulating water supply tank in an embodiment;

图8是图7中B处的放大图;Figure 8 is an enlarged view at B in Figure 7;

图9是实施例中补水浮球阀的位置示意图;Fig. 9 is a schematic diagram of the position of the replenishment float valve in the embodiment;

图10是实施例中漂洗装置的结构示意图;Fig. 10 is a schematic structural view of the rinsing device in the embodiment;

图11是实施例中摇摆吹风机构的结构示意图;Fig. 11 is a schematic structural view of the swing blowing mechanism in the embodiment;

图12是图11中C处的放大图;Figure 12 is an enlarged view at C in Figure 11;

图13是实施例中摇摆吹风机构另一个视角的结构示意图;Fig. 13 is a structural schematic view of another perspective of the swing blowing mechanism in the embodiment;

图14是图1中D处的放大图。Fig. 14 is an enlarged view at D in Fig. 1 .

附图标记:1、清洗装置;2、漂洗装置;3、烘干装置;4、输送装置;5、第一喷淋清洗机构;6、清洗槽;7、第二喷淋清洗机构;8、定向吹风机构;9、第一超声波清洗机构;10、喷淋箱;11、通口;12、遮挡条;13、超声波清洗架;14、上超声波发生器;15、下超声波发生器;16、门型架;17、长吊杆;18、短吊杆;19、上风吹组件;20、下风吹组件;21、上吹风泵;22、上出风管;23、下吹风泵;24、下引风管;25、下出风管;26、循环补水箱;27、杂质过滤装置;28、油污排出装置;29、输液装置;30、吸附装置;31、循环补水装置;32、过滤盘;33、过滤网;34、自溢槽;35、排水管;36、补水管;37、进水阀;38、补水浮球阀;42、漂洗槽;43、第三喷淋清洗机构;44、摇摆吹风机构;45、第二超声波清洗机构;46、上除水出风组件;47、下除水出风组件;48、除水吹风泵;49、除水引风管;50、除水出风管;51、除水吹风口;52、滑动安装架;53、导向槽;54、上除水支架;55、动力组件;56、驱动电机;57、转盘;58、传动杆;59、第一安装板;60、第二安装板;61、过渡板;62、烘干箱;63、热风机;64、透气管;65、密封板;66、链带;67、动力机构;68、清洗箱;69、漂洗箱;70、机架;71、吹风孔。Reference signs: 1. cleaning device; 2. rinsing device; 3. drying device; 4. conveying device; 5. first spray cleaning mechanism; 6. cleaning tank; 7. second spray cleaning mechanism; 8. Directional blowing mechanism; 9. First ultrasonic cleaning mechanism; 10. Spray box; 11. Port; 12. Blocking strip; 13. Ultrasonic cleaning frame; 14. Upper ultrasonic generator; 15. Lower ultrasonic generator; Portal frame; 17. Long boom; 18. Short boom; 19. Upwind blowing component; 20. Downwind blowing component; 21. Up blowing pump; 22. Up outlet duct; 23. Down blowing pump; 24. Down 25. Lower air outlet pipe; 26. Circulating water supply tank; 27. Impurity filter device; 28. Oil pollution discharge device; 29. Infusion device; 30. Adsorption device; 31. Circulating water supply device; 32. Filter plate; 33. Filter screen; 34. Self-overflow tank; 35. Drainage pipe; 36. Water supply pipe; 37. Water inlet valve; 38. Water supply float valve; 42. Rinsing tank; 43. The third spray cleaning mechanism; 44. Swing Blowing mechanism; 45. Second ultrasonic cleaning mechanism; 46. Upper water removal air outlet assembly; 47. Lower water removal air outlet assembly; 48. Water removal blowing pump; 49. Water removal air duct; 50. Water removal air outlet pipe ;51, dewatering blowing outlet; 52, sliding mounting bracket; 53, guide groove; 54, upper dewatering support; 55, power assembly; 56, drive motor; 57, turntable; 58, transmission rod; Plate; 60, the second mounting plate; 61, transition plate; 62, drying box; 63, hot air blower; 64, ventilation pipe; 65, sealing plate; 66, chain belt; 67, power mechanism; 68, cleaning box; 69, rinsing box; 70, frame; 71, blowing hole.

具体实施方式Detailed ways

以下结合附图对本实用新型作进一步详细说明。Below in conjunction with accompanying drawing, the utility model is described in further detail.

如图1所示,一种超声波清洗机,包括机架70和位于机架70上的清洗装置1、漂洗装置2、烘干装置3以及输送换向片依次经过清洗装置1、漂洗装置2、烘干装置3的输送装置4。As shown in Figure 1, an ultrasonic cleaning machine comprises a frame 70 and a cleaning device 1 positioned on the frame 70, a rinsing device 2, a drying device 3, and a conveying reversing piece passing through the cleaning device 1, the rinsing device 2, The conveying device 4 of the drying device 3 .

如图1和图2所示,清洗装置1包括清洗箱68和位于清洗箱68内的第一喷淋清洗机构5、清洗槽6、第二喷淋清洗机构7、定向吹风机构8,清洗槽6内安装有第一超声波清洗机构9。输送装置4输送换向片依次经过第一喷淋清洗机构5、作为容液槽的清洗槽6、第二喷淋清洗机构7和定向吹风机构8。As shown in Figures 1 and 2, the cleaning device 1 includes a cleaning box 68 and a first spray cleaning mechanism 5 positioned in the cleaning box 68, a cleaning tank 6, a second spray cleaning mechanism 7, a directional blowing mechanism 8, and a cleaning tank. 6 is equipped with a first ultrasonic cleaning mechanism 9. The conveying device 4 transports the commutator segments through the first spray cleaning mechanism 5 , the cleaning tank 6 as a liquid holding tank, the second spray cleaning mechanism 7 and the directional blowing mechanism 8 .

如图2和图3所示,第一喷淋清洗机构5包括喷淋箱10和喷淋箱10内用于喷淋的喷淋管,喷淋管上安装有朝向输送装置4输送的物料喷液的喷头,喷淋箱10的两侧均开有方形的通口11,输送装置4从通口11经过喷淋箱10。为了避免喷淋箱10内喷淋清洗的时候有清洗液喷出来,在通口11的上侧连接有多片侧面依次抵接的遮挡条12,遮挡条12下垂密闭通口11位置。通过遮挡条12遮蔽通口11,避免水喷出,同时遮挡条12不会影响输送装置4输送换向片。第二喷淋清洗机构7的结构与第一喷淋清洗机构5相同。As shown in Figures 2 and 3, the first spray cleaning mechanism 5 includes a spray box 10 and a spray pipe used for spraying in the spray box 10, and the spray pipe is equipped with a material spraying machine for conveying towards the conveying device 4. The spray head of liquid, the two sides of spray box 10 all have square mouth 11, conveying device 4 passes through spray box 10 from mouth 11. In order to avoid spray cleaning in the spray box 10 when cleaning liquid is sprayed out, the upper side of the port 11 is connected with a plurality of shielding strips 12 whose sides abut in turn, and the shielding strips 12 droop to seal the position of the port 11. The port 11 is shielded by the shading strip 12 to avoid water spraying out, and at the same time the shading strip 12 will not affect the delivery of the commutator segment by the conveying device 4 . The structure of the second spray cleaning mechanism 7 is the same as that of the first spray cleaning mechanism 5 .

如图2和图3所示,第一超声波清洗机构9包括位于清洗槽6上方的超声波清洗架13、位于超声波清洗架13上的多个上超声波发生器14和下超声波发生器15,输送装置4输送换向片从上超声波发生器14和下超声波发生器15之间经过第一超声波清洗机构9。超声波清洗架13包括多根横跨在清洗槽6上方的门型架16,门型架16上安装有多根朝下的长吊杆17和短吊杆18,短吊杆18的下端与上超声波发生器14固定连接,长吊杆17的下端与下超声波发生器15固定连接。As shown in Figures 2 and 3, the first ultrasonic cleaning mechanism 9 comprises an ultrasonic cleaning rack 13 positioned above the cleaning tank 6, a plurality of upper ultrasonic generators 14 and lower ultrasonic generators 15 positioned on the ultrasonic cleaning rack 13, and the delivery device 4. Convey the reversing segment through the first ultrasonic cleaning mechanism 9 between the upper ultrasonic generator 14 and the lower ultrasonic generator 15. The ultrasonic cleaning frame 13 comprises a plurality of gantry frames 16 spanning the top of the cleaning tank 6, and a plurality of downward long suspenders 17 and short suspenders 18 are installed on the gantry 16, and the lower end of the short suspenders 18 and the upper The ultrasonic generator 14 is fixedly connected, and the lower end of the long boom 17 is fixedly connected with the lower ultrasonic generator 15 .

如图4和图5所示,定向吹风机构8(图2中示出)包括上风吹组件19和下风吹组件20,上风吹组件19包括上吹风泵21,上吹风泵21的出风口连接有上出风管22。上出风管22呈上大下小的中空楔形结构且下端开口,上出风管22从上往下朝向第二喷淋清洗机构7方向倾斜。下风吹组件20包括下吹风泵23和连接在下吹风泵23出风口的下引风管24,下引风管24远离下吹风泵23的一端分叉连接有两根位于输送装置4下方的下出风管25,两根下出风管25的端口密闭且朝上的一侧均开有吹风孔71。通过上出风管22和下出风管25配合向输送装置4上的换向片吹风。As shown in Figures 4 and 5, the directional blowing mechanism 8 (shown in Figure 2) includes an upper wind blowing assembly 19 and a lower wind blowing assembly 20, and the upper wind blowing assembly 19 includes an upper blowing pump 21, and the air outlet of the upper blowing pump 21 is connected with Go up the air duct 22. The upper air outlet pipe 22 is a hollow wedge-shaped structure with a large top and a small bottom, and the lower end is open. The upper air outlet pipe 22 is inclined from top to bottom toward the direction of the second spray cleaning mechanism 7 . The downwind blowing assembly 20 includes a downblowing pump 23 and a down-introducing air pipe 24 connected to the air outlet of the down-blowing pump 23. The end of the down-introducing air pipe 24 away from the down-blowing pump 23 is bifurcated and connected with two lower outlets located below the conveying device 4. Air duct 25, the ports of two air outlet ducts 25 are airtight and have blowing holes 71 on the upward side. Blast is blown to the reversing segments on the conveying device 4 through the cooperation of the upper air outlet pipe 22 and the lower air outlet pipe 25 .

如图2和图6所示,清洗槽6的侧面安装有循环补水箱26来净化清洗槽6中的清洗液,使其能够循环使用,节省水资源。As shown in Fig. 2 and Fig. 6, a circulating replenishing water tank 26 is installed on the side of the cleaning tank 6 to purify the cleaning liquid in the cleaning tank 6, so that it can be recycled and save water resources.

如图6和图7所示,循环补水箱26内安装有杂质过滤装置27、油污排出装置28、输液装置29、吸附装置30和循环补水装置31。通过杂质过滤装置27对流入循环补水箱26内的清洗液初步过滤除去夹带的较大杂质,之后通过油污排出装置28除去清洗液中的油污,然后将处理过的清洗液通过输液装置29输送出去,这时候通过吸附装置30对清洗液进行再次净化,除去其中的异味和细小杂质。当循环补水箱26内的清洗液不足的时候通过循环补水装置31补充。As shown in FIGS. 6 and 7 , the circulating water replenishment tank 26 is equipped with an impurity filtering device 27 , an oil discharge device 28 , an infusion device 29 , an adsorption device 30 and a circulating water replenishing device 31 . Use impurity filtering device 27 to preliminarily filter the cleaning solution flowing into the circulating water supply tank 26 to remove entrained larger impurities, then remove the oil in the cleaning solution through oil discharge device 28, and then transport the treated cleaning solution through infusion device 29 At this time, the cleaning liquid is purified again by the adsorption device 30 to remove peculiar smell and fine impurities therein. When the cleaning fluid in the circulating replenishing water tank 26 is insufficient, it is supplemented by a circulating replenishing water device 31 .

如图7所示,杂质过滤装置27包括与循环补水箱26固定连接的过滤盘32,过滤盘32位于循环补水箱26内壁上靠近循环补水箱26和清洗槽6连通的回水口的下侧位置。清洗液导入过滤盘32内,杂质留在过滤盘32内,而水通过过滤盘32流入循环补水箱26内。杂质过滤装置27还包括位于循环补水箱26中部的过滤网33,过滤网33从上往下向过滤盘32方向倾斜,该种设置方式,可以有效增加过滤网33的过滤面积,提升了过滤的效果。水在循环补水箱26内从过滤盘32一侧流向输液装置29一侧的时候会经过过滤网33二次过滤,进一步除去清洗液中的杂质。As shown in Figure 7, the impurity filtering device 27 includes a filter plate 32 fixedly connected to the circulating water supply tank 26, and the filter plate 32 is located on the inner wall of the circulating water supply tank 26, close to the lower side of the water return port that the circulating water supply tank 26 communicates with the cleaning tank 6 . The cleaning liquid is introduced into the filter disc 32 , and impurities are left in the filter disc 32 , and water flows into the circulating water supply tank 26 through the filter disc 32 . The impurity filtering device 27 also includes a filter screen 33 located in the middle of the circulating water supply tank 26. The filter screen 33 is inclined from top to bottom towards the filter disc 32. This arrangement can effectively increase the filter area of the filter screen 33 and improve the efficiency of filtration. Effect. When the water flows from the side of the filter plate 32 to the side of the infusion device 29 in the recirculating water supply tank 26, it will be filtered through the filter screen 33 for a second time to further remove impurities in the cleaning solution.

如图7和图8所示,油污排出装置28包括连接在过滤网33上端的截面为倒门型的自溢槽34,自溢槽34的两端与循环补水箱26相对的两侧壁焊连,且自溢槽34面向过滤盘32一侧的侧边低于背向过滤盘32一侧的侧边,使得仅有过滤盘32一侧的水会溢入自溢槽34内。循环补水箱26的侧壁上插有排水管35连通到自溢槽34,流入自溢槽34内的清洗液通过排水管35中排放出去。清洗下来的油污是浮在液面上的,因此油污会随着溢入自溢槽34的液体一起排放出去。As shown in Fig. 7 and Fig. 8, the oily dirt discharge device 28 comprises the self-overflow tank 34 that is connected to the cross section of the upper end of the filter screen 33, and the two ends of the self-overflow tank 34 are welded to the opposite side walls of the circulating water supply tank 26. Connected, and the side from the overflow tank 34 facing the side of the filter disc 32 is lower than the side of the side facing away from the filter disc 32, so that only the water on the side of the filter disc 32 can overflow into the overflow tank 34. A drain pipe 35 is inserted on the side wall of the circulating replenishing water tank 26 to communicate with the overflow tank 34 , and the cleaning solution flowing into the overflow tank 34 is discharged through the drain pipe 35 . The greasy dirt cleaned is floating on the liquid surface, so the greasy dirt can be discharged together with the liquid overflowing into from the overflow tank 34.

如图7所示,输液装置29为抽液泵,抽液泵的出水口连接有过滤净化器作为吸附装置30来净化通过抽液泵输出的清洗液,抽液泵输送清洗液进入清洗槽6内。As shown in Figure 7, the infusion device 29 is a liquid suction pump, and the outlet of the liquid suction pump is connected with a filter purifier as an adsorption device 30 to purify the cleaning liquid output by the liquid suction pump, and the liquid suction pump transports the cleaning liquid into the cleaning tank 6 Inside.

如图6和图7所示,循环补水装置31包括插入循环补水箱26内自溢槽34和过滤盘32之间位置的补水管36,补水管36上安装有进水阀37控制进水管的启闭。如图9所示,补水管36插入循环补水箱26内的一端连接有补水浮球阀38来根据循环补水箱26内的水位调节流量的大小。当补水浮球阀38的浮球的位置低于补水管36的位置时,清洗液从补水管36中流出。浮球的位置越低时,补水管36的进水量就越大。补水管36的位置与自溢槽34较高侧边的位置平齐,使得水位可以涨到超出自溢槽34较低侧的位置将油污排出,又不会将油污溢出到自溢槽34背向过滤盘32的一侧。As shown in Figures 6 and 7, the circulating water supply device 31 includes a water supply pipe 36 inserted between the self-overflow tank 34 and the filter disc 32 in the circulating water supply tank 26, and the water supply pipe 36 is equipped with a water inlet valve 37 to control the water inlet pipe. opening and closing. As shown in FIG. 9 , one end of the replenishing water pipe 36 inserted into the circulating replenishing water tank 26 is connected with a replenishing water float valve 38 to adjust the flow rate according to the water level in the circulating replenishing water tank 26 . When the position of the float of the water replenishment float valve 38 is lower than that of the water replenishment pipe 36 , the cleaning liquid flows out from the water replenishment pipe 36 . When the position of the float ball was lower, the water intake of the water supply pipe 36 was larger. The position of the replenishment pipe 36 is flush with the position of the higher side of the self-overflow tank 34, so that the water level can rise to the position beyond the lower side of the self-overflow tank 34 to discharge the oil, and the oil will not overflow to the back of the self-overflow tank 34 To the side of the filter disc 32.

如图10所示,漂洗装置2包括漂洗箱69和位于漂洗箱69内的作为容液槽的漂洗槽42、第三喷淋清洗机构43、摇摆吹风机构44,漂洗槽42内安装有第二超声波清洗机构45。其中第三喷淋清洗机构43与第一喷淋清洗机构5的结构和原理相同,第二超声波清洗机构45与第一超声波清洗机构9的结构和原理相同。输送装置4输送换向片依次经过漂洗槽42、第三喷淋清洗机构43和摇摆吹风机构44。As shown in Figure 10, the rinsing device 2 includes a rinsing tank 69 and a rinsing tank 42 as a liquid tank located in the rinsing tank 69, a third spray cleaning mechanism 43, a swing blowing mechanism 44, and a second washing machine installed in the rinsing tank 42. Ultrasonic cleaning mechanism 45. The third spray cleaning mechanism 43 has the same structure and principle as the first spray cleaning mechanism 5 , and the second ultrasonic cleaning mechanism 45 has the same structure and principle as the first ultrasonic cleaning mechanism 9 . The conveying device 4 conveys the reversing segments through the rinsing tank 42 , the third spray cleaning mechanism 43 and the swing blowing mechanism 44 in sequence.

如图11所示,摇摆吹风机构44包括上除水出风组件46和下除水出风组件47,其中下除水出风组件47和下风吹组件20的结构和原理相同。As shown in FIG. 11 , the swing blowing mechanism 44 includes an upper water removal and air outlet assembly 46 and a lower water removal and air outlet assembly 47 , wherein the lower water removal and air outlet assembly 47 and the lower air blowing assembly 20 have the same structure and principle.

如图11和图12所示,上除水出风组件46包括除水吹风泵48和连接在除水吹风泵48出风口的除水引风管49,除水引风管49为软管。除水引风管49远离除水吹风泵48的一端连接有两根方管制成的除水出风管50,两根除水出风管50的端口密闭且朝下的一侧均开有除水吹风口51。两根除水出风管50均安装在滑动安装架52上,滑动安装架52上开有导向槽53与固定的上除水支架54配合。滑动安装架52能够沿着上除水支架54在水平面上运动且运动方向和输送装置4输送换向片的方向垂直。如图12和图13所示,除水出风管50的长度小于输送装置4的宽度,通过动力组件55带动滑动安装架52沿着上除水支架54来回运动。动力组件55包括驱动电机56,驱动电机56的输出轴上固定连接有转盘57,转盘57上偏心设置有转动轴,滑动安装架52上设有与转动轴轴线相平行的转动销,传动杆58的一端与转动轴之间转动连接、另一端与转动销之间转动连接。As shown in Figures 11 and 12, the upper dewatering air outlet assembly 46 includes a dewatering blowing pump 48 and a dewatering air duct 49 connected to the air outlet of the dewatering blowing pump 48, and the dewatering air duct 49 is a hose. The end of the dewatering air duct 49 away from the dewatering blowing pump 48 is connected with two dewatering air outlet pipes 50 made of square pipes. Mouth 51. Two dewatering air outlet pipes 50 are all installed on the sliding mounting frame 52, and the sliding mounting frame 52 has a guide groove 53 to cooperate with the fixed upper dewatering bracket 54. The sliding mounting frame 52 can move on the horizontal plane along the upper dewatering bracket 54 and the moving direction is perpendicular to the direction in which the conveying device 4 conveys the commutator segment. As shown in FIGS. 12 and 13 , the length of the dewatering outlet pipe 50 is smaller than the width of the conveying device 4 , and the power assembly 55 drives the sliding installation frame 52 to move back and forth along the upper dewatering bracket 54 . The power assembly 55 includes a driving motor 56, the output shaft of the driving motor 56 is fixedly connected with a rotating disk 57, the rotating disk 57 is eccentrically provided with a rotating shaft, the sliding mount 52 is provided with a rotating pin parallel to the axis of the rotating shaft, and a transmission rod 58 One end is rotationally connected to the rotating shaft, and the other end is rotationally connected to the rotating pin.

如图12所示,滑动安装架52包括第一安装板59、第二安装板60以及连接第一安装板59和第二安装板60的过渡板61,导向槽53就位于过渡板61的下侧。两根除水出风管50分别固定在第一安装板59和第二安装板60上,且第一安装板59和第二安装板60均朝向与输送装置4输送方向相反的方向倾斜,使得吹出的风与换向片的运动方向相反,风吹效果更好。其中第一安装板59位于第二安装板60背向输送装置4输送方向的一侧且第一安装板59的倾斜角度更大。As shown in Figure 12, the sliding mounting frame 52 includes a first mounting plate 59, a second mounting plate 60, and a transition plate 61 connecting the first mounting plate 59 and the second mounting plate 60, and the guide groove 53 is located under the transition plate 61. side. Two water removal air outlet pipes 50 are respectively fixed on the first mounting plate 59 and the second mounting plate 60, and the first mounting plate 59 and the second mounting plate 60 are all inclined towards the direction opposite to the conveying direction of the conveying device 4, so that the blowing out The direction of movement of the wind is opposite to that of the commutator piece, and the effect of wind blowing is better. Wherein the first mounting plate 59 is located on the side of the second mounting plate 60 facing away from the conveying direction of the conveying device 4 and the inclination angle of the first mounting plate 59 is larger.

如图14所示,烘干装置3包括烘干箱62和安装在烘干箱62上的热风机63,通过热风机63对烘干箱62内加热烘干,烘干箱62的上侧连接有透气管64,透气管64的上端以轴心线呈竖直状态的形式转动连接有密封板65,通过转动密封板65来控制透气管64的启闭。As shown in Figure 14, the drying device 3 includes a drying box 62 and a hot air blower 63 installed on the drying box 62, and the drying box 62 is heated and dried by the hot air blower 63, and the upper side of the drying box 62 is connected Vent pipe 64 is arranged, and the upper end of vent pipe 64 is connected with seal plate 65 in the form that axis line is vertical state, and the opening and closing of vent pipe 64 is controlled by rotating seal plate 65.

如图2所示,输送装置4包括链带66和带动链带66运动的动力机构67,由于链带66具有较好的滤水效果,因此从一个工位进入下一工位的时候不会将大量的清洗液或清水携带出去。同时进行风吹、烘干的时候也会更加容易。As shown in Figure 2, the conveying device 4 includes a chain belt 66 and a power mechanism 67 that drives the movement of the chain belt 66. Since the chain belt 66 has a better water filtering effect, it will not enter the next station from one station. Carry large amounts of cleaning fluid or water with you. It will also be easier to blow and dry at the same time.

具体使用过程:Specific use process:

步骤一、输送装置4输送换向片进入第一喷淋清洗机构5中初步喷淋清洗,除去表面附着的杂物;之后继续输送换向片至清洗槽6中,通过第一超声波清洗机构9除去换向片表面的油污;然后输送换向片至第二喷淋清洗机构7中时,通过喷淋清洗表面的清洗液;最后输送换向片至定向吹风机构8将换向片表面的清洗液吹除。通过上述方式除去换向片表面的杂质和油污。Step 1. The conveying device 4 transports the commutator segment into the first spray cleaning mechanism 5 for preliminary spray cleaning to remove the sundries attached to the surface; then continue to transport the commutator segment to the cleaning tank 6, and pass through the first ultrasonic cleaning mechanism 9 Remove the oil stain on the surface of the commutator piece; then when the commutator piece is transported to the second spray cleaning mechanism 7, the cleaning liquid on the surface is sprayed; finally, the commutator piece is sent to the directional blowing mechanism 8 to clean the surface of the commutator piece. Fluid blow off. Remove impurities and oil stains on the surface of the commutator through the above method.

步骤二、输送装置4继续输送换向片进入漂洗槽42中漂洗,通过第二超声波清洗机构45加速换向片表面的清洗液溶于清水中;然后将换向片输送到第三喷淋清洗机构43中进行喷淋清洗,清水槽中的水长期使用会含有低浓度的清洗液,通过喷淋清洗避免换向片表面有低浓度的清洗液残留;最后将换向片输送至风吹装置的位置吹除表面的清洗水。通过上述方式除去换向片表面残留的清洗液。Step 2, the conveying device 4 continues to transport the commutator piece into the rinse tank 42 for rinsing, and the second ultrasonic cleaning mechanism 45 accelerates the cleaning liquid on the surface of the commutator piece to dissolve in the clean water; then the commutator piece is transported to the third spray cleaning Spray cleaning is carried out in the mechanism 43. The water in the clear water tank will contain low-concentration cleaning liquid after long-term use. The low-concentration cleaning liquid residue on the surface of the commutator piece can be avoided by spray cleaning; finally, the commutator piece is transported to the wind blowing device Blow off the cleaning water on the surface. Remove the cleaning fluid remaining on the surface of the commutator segment by the above method.

步骤三、输送至烘干装置3将换向片烘干。Step 3: Transport to drying device 3 to dry the commutator segments.

本具体实施例中的指定方向仅仅是为了便于表述各部件之间位置关系以及相互配合的关系。本具体实施例仅仅是对本实用新型的解释,其并不是对本实用新型的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本实用新型的权利要求范围内都受到专利法的保护。The specified directions in this specific embodiment are only for the convenience of expressing the positional relationship among the various components and the mutual cooperation relationship. This specific embodiment is only an explanation of the utility model, and it is not a limitation of the utility model. After reading this description, those skilled in the art can make modifications to the embodiment without creative contribution according to needs, but as long as it is within the utility model All new claims are protected by patent law.

Claims (10)

1. a kind of supersonic wave cleaning machine, including rack (70), it is provided with feed end and discharge end in rack (70), in rack (70) It is equipped with drying unit (3) close to the side of discharge end, it is characterized in that:Be located in rack (70) feed end and drying unit (3) it Between and from charging to discharging direction be disposed with cleaning device (1) and rinsing device (2), be arranged between feed end and discharge end There is conveying material to pass through the conveying device (4) of cleaning device (1), rinsing device (2), drying unit (3) successively by feed end.
2. supersonic wave cleaning machine according to claim 1, it is characterized in that:The cleaning device (1) include cleaning case (68), Ultrasonic cleaning agency in cleaning case (68), cleaning case (68) are equipped with wash feed mouth, court towards the side of feed end It is equipped with cleaning discharge port to the side of discharge end, the bottom of cleaning case (68) is recessed with downwards appearance liquid bath, ultrasonic cleaning agency At position corresponding with liquid bath is held;
The rinsing device (2) includes rinse tank (69), the ultrasonic cleaning agency in rinse tank (69), rinse tank (69) It is equipped with rinsing feed inlet towards the side of feed end, is equipped with rinsing discharge port, the case of rinse tank (69) towards the side of discharge end Bottom is recessed with downwards appearance liquid bath, and ultrasonic cleaning agency is set at position corresponding with liquid bath is held.
3. supersonic wave cleaning machine according to claim 2, it is characterized in that:The ultrasonic cleaning agency includes that ultrasonic wave is clear Wash frame (13), the upper supersonic generator (14) that is installed on ultrasonic cleaning rack (13) and lower supersonic generator (15), on There is certain interval between supersonic generator (14) and lower supersonic generator (15) and lower supersonic generator (15) is set Below the liquid level held in liquid bath;The conveying device (4) conveys material and is sent out from upper supersonic generator (14) and lower ultrasonic wave Pass through between raw device (15).
4. supersonic wave cleaning machine according to claim 2, it is characterized in that:Close to wash feed mouth in the cleaning case (68) Side or/and close to cleaning discharge port side be equipped with cleaning showers mechanism, cleaning showers mechanism and cleaning discharge port between Equipped with orientation blower mechanism (8);
In the rinse tank (69) close to rinsing discharge port side be equipped with cleaning showers mechanism, cleaning showers mechanism with wash out It is equipped between material mouth and waves blower mechanism (44).
5. supersonic wave cleaning machine according to claim 4, it is characterized in that:The cleaning showers mechanism includes spraying box (10) And the spray tube on spraying box (10) case top or/and bottom, spray tube are equipped with the object conveyed towards conveying device (4) Expect the nozzle of hydrojet;Spraying box (10) is equipped with spray feed inlet towards the side of feed end, is equipped with spray towards the side of discharge end Drench discharge port, spray feed inlet and the upside for spraying discharge port be equipped with it is multiple it is vertically arranged block item (12), it is adjacent to block item (12) adjacent side is close to each other or abuts.
6. supersonic wave cleaning machine according to claim 4, it is characterized in that:The orientation blower mechanism (8) includes upper wind Component (19) and lower wind component (20);
Upper wind component (19) includes up-draught pump (21), pumps the upper discharge pipe (22) that the air outlet of (21) is connect with up-draught, Blowhole (71) is offered on the downside of upper discharge pipe (22);
Lower wind component (20) includes lower blowing pump (23), pumps the lower induced duct (24) that (23) air outlet is connect with lower blowing, under Lower discharge pipe (25) there are two connections is pitched in the air outlet punishment of induced duct (24), is opened up on the upper side of two lower discharge pipes (25) There is blowhole (71);Conveying device (4) conveying material passes through between upper discharge pipe (22) and lower discharge pipe (25).
7. supersonic wave cleaning machine according to claim 6, it is characterized in that:The blower mechanism (44) that waves includes that water removal is blown The upper water removal air-out component (46) being connect between air pump (48), pump (48) air outlet of drying with water removal by removing water induced duct (49) With lower water removal air-out component (47);
Upper water removal air-out component (46) includes upper water removal holder (54), is slidably mounted on being slidably installed on water removal holder (54) Frame (52), the both sides on the frame that is slidably installed (52) are separately installed with water removal discharge pipe (50), on two on water removal discharge pipe (50) It is respectively equipped with the upper water removal blowing mouth (51) being arranged downward;Frame (52) be slidably installed by the Power Component that is set in rack (70) (55) it drives.
8. supersonic wave cleaning machine according to claim 7, it is characterized in that:The Power Component (55) includes driving motor (56) and drive link (58), it is installed with turntable (57) on the output shaft of driving motor (56), there is eccentric setting on turntable (57) turns Moving axis, the frame that is slidably installed (52) are equipped with the rotational pin parallel with rotation axis axis, one end of drive link (58) and rotation axis Between be rotatablely connected between rotation connection, the other end and rotational pin.
9. supersonic wave cleaning machine according to claim 8, it is characterized in that:Distinguish equipped with position the side of the rack (70) Circular water replenishing device (31) corresponding with cleaning case (68) and rinse tank (69), circular water replenishing device (31) includes circular water replenishing Case (26), the water return outlet and drawing liquid pump for being set to both sides on circular water replenishing case (26), water return outlet connect with the corresponding side for holding liquid bath Logical, drawing liquid pump is connected to by filtration purifier with the corresponding other side for holding liquid bath;
The middle part of the circular water replenishing case (26) is equipped with filter screen (33), and circular water replenishing case (26) is divided into secondary by filter screen (33) Grade filtering area and the qualified area of filtering, the interior upper side position positioned at secondary filter area of circular water replenishing case (26) are equipped with primary filter Area, primary filter area include the filtering table (32) being set on the downside of water return outlet, and drawing liquid pump is set on circular water replenishing case (26) and filtering The qualified corresponding position in area;
The upper end of the filter screen (33) be equipped with from overflow slot (34), from overflow slot (34) both ends respectively with circular water replenishing case (26) Two opposite inner walls are fixedly connected, and position corresponding with certainly excessive slot (34) is equipped with leakage fluid dram on circular water replenishing case (26);
The inner wall of the circular water replenishing case (26) in the secondary filter area is equipped with water supplement port, and water supplement port is equipped with floating ball valve of rehydration (38)。
10. according to claim 1-9 any one of them supersonic wave cleaning machines, it is characterized in that:The conveying device (4) includes chain Band (66) and the actuating unit (67) for driving chain belt (66) to move.
CN201721619885.9U 2017-11-28 2017-11-28 Supersonic wave cleaning machine Active CN207872679U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107824544A (en) * 2017-11-28 2018-03-23 浙江长城换向器有限公司 Supersonic wave cleaning machine
CN109701980A (en) * 2019-02-26 2019-05-03 成都慧晶机械设备有限公司 A kind of spray head steering mechanism and the glue cylinder cleaning equipment using spray head steering mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107824544A (en) * 2017-11-28 2018-03-23 浙江长城换向器有限公司 Supersonic wave cleaning machine
CN109701980A (en) * 2019-02-26 2019-05-03 成都慧晶机械设备有限公司 A kind of spray head steering mechanism and the glue cylinder cleaning equipment using spray head steering mechanism

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