Part oil removing equipment

By designing an automated parts cleaning equipment, and utilizing cleaning components, moving mechanisms, and transfer components, batch cleaning and drying of wires is achieved, solving the problem of low wire cleaning efficiency and improving cleaning efficiency and quality.

CN223454718UActive Publication Date: 2025-10-21JIANGSU ZHONGTIAN TECH CO LTD +2
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Patent Information

Application Number
CN202421693533.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-10-21
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The existing technology has low efficiency in cleaning oil from wires and mainly relies on manual wiping, which is time-consuming and labor-intensive.

Method used

Design a parts cleaning equipment, including a cleaning component, a moving mechanism, a storage rack and a transfer component, to perform batch cleaning and drying of wires through an automated cleaning tank and a drying component, achieving a highly automated cleaning process.

Benefits of technology

It improves the efficiency and quality of wire cleaning, reduces labor costs, and enables batch cleaning of multiple wires simultaneously, solving the problem of low cleaning efficiency in existing technologies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides part oil removing equipment, and belongs to the technical field of part oil removing. The part oil removing equipment comprises an oil removing assembly, a moving mechanism, at least one storage rack and at least one transfer assembly; the storage rack is used for simultaneously placing a plurality of parts; the oil cleaning assembly comprises a main box body and a drying piece, and the main box body is provided with a cleaning pool; the moving mechanism is used for driving the storage rack to move and sequentially enter and exit from the area where the cleaning pool and the drying piece are located, the cleaning pool is used for cleaning oil of the parts in the storage rack, and the drying piece is used for drying the parts subjected to oil cleaning; the transfer assembly is used for conveying the storage racks to the moving mechanism or receiving and outputting the storage racks from the moving mechanism. According to the part oil removing equipment provided by the embodiment of the invention, the problem that the oil removing efficiency of a wire is relatively low in the prior art is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of part oil cleaning, in particular to a part oil cleaning equipment. BACKGROUND

[0002] In the production process of parts, in order to ensure that the produced parts meet the requirements, the performance of the parts is usually detected. At this time, taking a wire as an example, in order to ensure that the wire meets the requirements, a certain length of wire is usually taken out from the product as a sample, and then the performance of the sample is detected.

[0003] Because the wire surface is easy to adsorb a large amount of oil dirt after the production and processing of the wire are completed, the wire surface needs to be cleaned before the performance of the taken wire is detected, so as to ensure the accuracy of the performance detection of the wire.

[0004] However, at present, when the wire is cleaned, the wire surface is mainly cleaned back and forth by artificial sampling and using a cleaning agent coated cloth, which is time-consuming and laborious, and the cleaning efficiency is low. CONTENT OF THE INVENTION

[0005] The embodiment of the present application provides a part oil cleaning equipment to solve the problem of low wire cleaning efficiency in the prior art.

[0006] In order to achieve the above purpose, the embodiment of the present application provides the following technical scheme:

[0007] The embodiment of the present application provides a part oil cleaning equipment, which comprises an oil cleaning assembly, a moving mechanism, at least one storage rack and at least one transfer assembly; the storage rack is used for placing a plurality of parts at the same time; the oil cleaning assembly comprises a main box body and a drying piece, the main box body has a cleaning pool; the moving mechanism is used for driving the storage rack to move and enter and exit the cleaning pool and the area where the drying piece is located in turn, the cleaning pool is used for cleaning the parts in the storage rack, and the drying piece is used for drying the parts after cleaning; the transfer assembly is used for conveying the storage rack to the moving mechanism or receiving and outputting the storage rack from the moving mechanism.

[0008] In a possible implementation, a protection box is further included, the oil cleaning assembly and the moving mechanism are located in the protection box, one side of the protection box has an entrance and exit, and the transfer assembly is used for driving the storage rack to enter and exit the protection box from the entrance and exit.

[0009] In a possible implementation, the transfer assembly comprises a sliding seat and a bearing disc, the bearing disc is arranged on the sliding seat and is used for placing the storage rack, and the sliding seat is used for driving the bearing disc to reciprocate at the entrance and exit, so as to drive the storage rack to enter and exit the protection box.

[0010] In a possible implementation, the sliding seat comprises a driving member, a guide rod and a sliding block, the guide rod is arranged at the entrance and exit, the sliding block is movably arranged on the guide rod, the driving member is configured to control the sliding block to move back and forth along the guide rod, and the bearing disc is arranged on the sliding block.

[0011] In a possible implementation, the cleaning tank comprises a cleaning tank and a rinsing tank arranged on the main box body, and a drying tank is further arranged on the main box body, the cleaning tank, the rinsing tank and the drying tank are sequentially arranged along the conveying direction of the storage rack; the cleaning tank is configured to contain a liquid with a cleaning agent for removing oil stains on the parts, the rinsing tank is configured to contain clean water for cleaning the cleaning agent remaining on the parts, and the drying member is configured as a drying fan, and an air outlet end of the drying fan is communicated with the drying tank.

[0012] In a possible implementation, the moving mechanism comprises a first moving assembly, a second moving assembly, a rack body and a picking member; the rack body is arranged on the protective box through the first moving assembly, so as to control the rack body to move horizontally in the protective box through the first moving assembly; the picking member is arranged on the rack body through the second moving assembly, so as to control the picking member to lift and lower relative to the rack body through the second moving assembly, and the picking member is configured to pick the storage rack.

[0013] In a possible implementation, the storage rack comprises a cleaning basket and a plurality of lifting lugs arranged on the cleaning basket, and the picking member comprises a plurality of connecting hooks connected to the second moving assembly, each of the connecting hooks is configured to be respectively hooked to each of the lifting lugs on the cleaning basket.

[0014] In a possible implementation, the first moving assembly comprises a rack, a walking gear and a first motor, the rack is arranged on the protective box and extends along the distribution direction of the cleaning tank and the drying member, the walking gear is rotatably arranged on the rack body and engaged with the rack, and the first motor is arranged on the rack body and configured to control the walking gear to roll along the rack.

[0015] In a possible implementation, the protective box is provided with a guide rail, and the extension direction of the guide rail is consistent with the extension direction of the rack; the rack body is provided with a guide block, and the guide block is movably arranged on the guide rail.

[0016] In a possible implementation, the second moving assembly comprises a lead screw, a second motor and a lifting seat, the lifting seat is arranged on the frame body in vertical movement, the lead screw is arranged on the frame body in rotation, the lead screw penetrates through the lifting seat in vertical direction and is threadedly connected with the lifting seat, and the pickup is arranged on the lifting seat.

[0017] The part oil cleaning device provided by the embodiment of the application comprises a cleaning assembly, a moving mechanism, at least one storage rack and at least one transfer assembly. The storage rack is used for simultaneously storing a plurality of parts. The cleaning assembly comprises a main box body and a drying piece. The main box body has a cleaning pool. The drying piece is used for drying the cleaned parts. The moving mechanism is used for driving the storage rack to move in and out of the areas where the cleaning pool and the drying piece are located in sequence. The cleaning pool is used for cleaning oil of the parts in the storage rack. The drying piece is used for drying the parts after oil cleaning. The transfer assembly is used for conveying the storage rack to the moving mechanism or receiving and outputting the storage rack from the moving mechanism. When the wires need to be cleaned, the cleaning pool is first filled with a liquid used for cleaning oil, such as cleaning liquid or water containing a cleaning agent. Then, a plurality of wires are simultaneously stored in the storage rack. The storage rack containing the wires is conveyed to the moving mechanism by the transfer assembly. Then, the moving mechanism picks up and moves the storage rack to move in and out of the areas where the cleaning pool and the drying piece are located in sequence. Then, the wires are cleaned by the cleaning pool, and the cleaned wires are dried by the drying piece. Finally, the storage rack is conveyed to the transfer assembly by the moving mechanism. Then, the transfer assembly receives the storage rack and outputs the storage rack and the cleaned wires. Therefore, the degree of automation of the wire cleaning process is high, the labor cost is reduced, a plurality of wires can be simultaneously cleaned in batches, the efficiency and quality of the wire cleaning are greatly improved, and the problem of low wire cleaning efficiency in the prior art is solved. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor. The drawings herein are incorporated into the specification and form part of the specification, show embodiments consistent with the present application, and together with the specification, serve to explain the principles of the present application.

[0019] Figure 1 The structure diagram of the part oil cleaning mechanism provided by the embodiment of the application Figure 1 ;

[0020] Figure 2 The structure diagram of the part oil cleaning mechanism provided by the embodiment of the application Figure 2;

[0021] Figure 3 For Figure 1 structure diagram of the main box in the middle part;

[0022] Figure 4 For Figure 2 structure diagram of the A part in the middle part;

[0023] Figure 5 For Figure 1 structure diagram of the storage rack in the middle part;

[0024] Figure 6 For Figure 2 structure diagram of the B part in the middle part;

[0025] Figure 7 For Figure 2 structure diagram of the C part in the middle part.

[0026] Through the above-mentioned drawings, the specific embodiments of the present application have been shown, and will be described in more detail hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application by any means, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments.

[0027] Explanation of reference signs:

[0028] 100- storage rack; 110- cleaning basket; 120- lifting lug;

[0029] 200- oil cleaning assembly; 210- main box; 211- cleaning pool; 212- rinsing pool; 213- drying pool; 220- drying piece;

[0030] 300- moving mechanism;

[0031] 310- first moving assembly; 311- rack; 312- walking gear; 313- first motor;

[0032] 320- second moving assembly; 321- screw rod; 322- second motor; 323- lifting seat;

[0033] 330- rack body;

[0034] 340- picking piece; 341- connecting hook;

[0035] 350- guide rail; 351- guide block;

[0036] 400- transfer assembly; 410- bearing disc; 420- guide rod; 430- sliding block;

[0037] 500- protection box; 510- entrance and exit. DETAILED DESCRIPTION

[0038] In order to make the objectives, technical solutions and advantages of the present application clearer, the following will clearly and completely describe the technical solutions in the present application and how the present application solves the above-mentioned technical problems with specific embodiments and in conjunction with the drawings in the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described repeatedly in some embodiments. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the scope of protection of the present application.

[0039] The terms "first", "second", "third", "fourth" and the like (if any) in the description, claims and drawings of the present application are used to distinguish similar objects, and do not necessarily indicate a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0040] In the embodiments of the present application, the words "exemplary" or "for example" are used to mean example, illustration, or description. Any embodiment or design solution described as "exemplary" or "for example" in the present application should not be interpreted as being more preferred or advantageous than other embodiments or design solutions. Rather, the use of "exemplary" or "for example" is intended to present relevant concepts in a concrete manner.

[0041] In the related art, in order to ensure that the produced parts meet the requirements, the performance of the parts is usually detected. For example, in order to ensure that the wire meets the requirements, a certain length of wire is usually taken out as a sample in the product, and then the performance of the sample is detected. Since the wire surface is easy to adsorb a large amount of oil stain after production and processing is completed, the wire surface needs to be degreased before the performance of the wire is detected to ensure the accuracy of the performance detection of the wire.

[0042] However, at present, when the wire is degreased, the wire surface is mainly wiped back and forth by hand with a cleaning agent-coated cloth after sampling by hand, so that the degreasing process of the wire is time-consuming and laborious, and the degreasing efficiency is low.

[0043] Therefore, the part oil cleaning equipment provided by the embodiment of the present application has high degree of automation in the process of wire cleaning, reduces the labor cost, can simultaneously clean a plurality of wires in batches, greatly improves the efficiency and quality of wire cleaning, and solves the problem of low wire cleaning efficiency in the prior art.

[0044] The technical solutions of the present application will be described in detail below in combination with the drawings and specific embodiments. The following specific embodiments can be combined with each other, and the same or similar concepts or processes can not be described in some embodiments.

[0045] As shown in Figure 1 , Figure 2 and Figure 3 , the embodiment of the present application provides a part oil cleaning equipment, which comprises an oil cleaning assembly 200, a moving mechanism 300, at least one storage rack 100, and at least one transfer assembly 400; the storage rack 100 is used for simultaneously placing a plurality of parts; the oil cleaning assembly 200 comprises a main box 210 and a drying piece 220, and the main box 210 has a cleaning pool; the moving mechanism 300 is used for driving the storage rack 100 to move and sequentially enter and exit the area where the cleaning pool and the drying piece 220 are located; the cleaning pool is used for cleaning the parts in the storage rack 100; the drying piece 220 is used for drying the cleaned parts; and the transfer assembly 400 is used for transferring the storage rack 100 to the moving mechanism 300 or receiving and outputting the storage rack 100 from the moving mechanism 300.

[0046] In the embodiment of the present application, the storage rack 100 is used for simultaneously placing a plurality of wires, so as to simultaneously transport the plurality of wires. The main box 210 has a cleaning pool with an opening facing upward, and when used, a liquid used for oil cleaning, such as cleaning liquid or water with cleaning agent, can be filled in the cleaning pool.

[0047] The moving mechanism 300 is arranged above the whole oil cleaning assembly 200, so that the moving mechanism 300 can drive the storage rack 100 to move and lift, and then the storage rack 100 sequentially enters and exits the area where the cleaning pool and the drying piece 220 are located.

[0048] As shown in Figure 1 particular, the transfer assembly 400 is provided in two, and the storage rack 100 is also provided in two, and the two storage racks 100 are correspondingly provided on the two transfer assemblies 400. So that the two transfer assemblies 400 can alternately transport the two storage racks 100 towards the moving mechanism 300, or alternately receive and output the storage rack 100 from the moving mechanism 300. Of course, the transfer assembly 400 or the storage rack 100 can also be provided in one, three or other quantities.

[0049] When it is necessary to clean the oil of the wires, a plurality of wires can be loaded into the storage rack 100 together, and then the storage rack 100 loaded with the wires is transported towards the moving mechanism 300 through the transfer assembly 400; secondly, the moving mechanism 300 picks up and moves the storage rack 100 to sequentially enter and exit the cleaning pool and the area where the drying piece 220 is located, and then the wires in the storage rack 100 are cleaned by the cleaning pool, and the wires after cleaning are dried by the drying piece 220; finally, the storage rack 100 is transported towards the transfer assembly 400 again through the moving mechanism 300, and then the storage rack 100 is received by the transfer assembly 400 and the wires after cleaning and the storage rack 100 are output, so that the cleaning process of the wires is highly automated, the labor cost is reduced, and a plurality of wires can be simultaneously cleaned in batches, which greatly improves the efficiency and quality of wire cleaning, and solves the problem of low efficiency of wire cleaning in the prior art.

[0050] Moreover, the two transfer assemblies 400 and the two storage racks 100 can be alternately used, so that when the staff is taking out the wires after cleaning from the previous storage rack 100, the next storage rack 100 loaded with wires to be cleaned can be sent to the moving mechanism 300 at the same time, so as to shorten the waste of time and further improve the efficiency of wire cleaning.

[0051] It should be noted that the part cleaning equipment can also be applicable to batch cleaning of bolts, nuts, steel bars or other parts, and has a wide range of applications.

[0052] As shown in Figure 1 and Figure 2 In some embodiments, the part cleaning equipment further comprises a protective box 500, and the cleaning assembly 200 and the moving mechanism 300 are located in the protective box 500, one side of the protective box 500 has an entrance and exit 510, and the transfer assembly 400 is used to drive the storage rack 100 to enter and exit the protective box 500 from the entrance and exit 510.

[0053] When in use, the protective box 500 can isolate the oil cleaning component 200 and the mobile mechanism 300 from the outside, reducing the possibility of the oil cleaning component 200 or the mobile mechanism 300 causing harm to surrounding personnel, and at the same time reducing the possibility of the oil cleaning component 200 or the mobile mechanism 300 being damaged by external forces, thereby improving overall safety.

[0054] In an embodiment of the present application, the transfer component 400 is arranged below the entrance and exit 510, and one end of the transfer component 400 is located outside the protective box 500, and the other end is located inside the protective box 500, so that the transfer component 400 can transport the storage rack 100 at the entrance and exit 510, allowing the storage rack 100 to enter and exit the protective box 500.

[0055] When the storage rack 100 enters the protection box 500 , the storage rack 100 is picked up by the moving mechanism 300 and moved to the oil cleaning assembly 200 .

[0056] In other embodiments, the entire transfer assembly 400 may be disposed inside the protective box 500 , or the entire transfer assembly 400 may be disposed outside the protective box 500 .

[0057] In actual setting, a door can also be provided on the protection box 500 to facilitate the staff to enter and exit the protection box 500, so as to facilitate the staff to enter and exit the protection box 500 to inspect and repair the oil cleaning component 200, the moving mechanism 300, etc. inside the protection box 500.

[0058] like Figure 3 As shown, in some embodiments, the cleaning pool includes a cleaning pool 211 and a rinsing pool 212 arranged on the main box body 210, and a drying pool 213 is also provided on the main box body 210. The cleaning pool 211, the rinsing pool 212 and the drying pool 213 are distributed in sequence along the conveying direction of the storage rack 100; the cleaning pool 211 is used to be filled with liquid containing detergent for removing grease on the parts, and the rinsing pool 212 is used to be filled with clean water for cleaning the residual detergent on the parts; the drying part 220 is set as a drying fan, and the air outlet end of the drying fan is connected to the drying pool 213.

[0059] Specifically, the openings of the cleaning tank 211, the rinsing tank 212 and the drying tank 213 on the main box 210 are all facing upward. The cleaning tank 211 is filled with water dissolved with detergent, and the rinsing tank 212 is filled with clean water.

[0060] like Figure 3As shown, the drying member 220 is provided as a drying fan, and the number of drying fans is not limited, which can be one, two or other number. The drying fan is fixed to the bottom of the main box body 210 by screwing, hanging, clamping or other means. At this time, the drying fan is provided with an air pipe, one end of which is communicated with the output end of the drying fan, and the other end is communicated with the drying pool 213 from the bottom of the drying pool 213. Preferably, the drying member 220 sends warm air into the drying pool 213, for example, an electric heating wire can be arranged in the air outlet of the drying fan.

[0061] When the wires are cleaned, the storage rack 100 loaded with the wires is transported by the moving mechanism 300, so that the storage rack 100 enters and exits the cleaning pool 211, the rinsing pool 212 and the drying pool 213 in turn. Then the wires are cleaned by the water containing cleaning agent in the cleaning pool 211, and then the cleaned wires are rinsed by the clean water in the rinsing pool 212 to wash away the cleaning agent remaining on the surface of the wires, and finally the wires are dried in the drying pool 213 by the drying member 220, realizing the whole process of cleaning the wires.

[0062] The drying pool 213 has a certain gathering effect on the wind power output by the drying member 220, so that the efficiency of drying the wires is higher.

[0063] In the embodiment of the application, the side wall of the drying pool 213 is also provided with a plurality of ventilation openings to further improve the flow effect of the airflow in the drying pool 213 and improve the drying effect of the wires. In addition, the drying member 220 can also be provided as a hair dryer, a hair drier or other blowing equipment, which is not limited.

[0064] In other embodiments, in order to improve the cleaning effect of the wires, a stirring assembly or a rotating brush can also be arranged in the cleaning pool 211 and the rinsing pool 212 to further facilitate the removal of oil stains on the wires.

[0065] As shown in Figure 2 and Figure 4 In some embodiments, the transfer assembly 400 includes a sliding seat and a bearing disc 410, the bearing disc 410 is arranged on the sliding seat and is used to place the storage rack 100, and the sliding seat is used to drive the bearing disc 410 to move back and forth at the entrance and exit 510 to drive the storage rack 100 to enter and exit the protective box 500.

[0066] The bearing disc 410 is horizontally arranged, and the middle part of the upper surface of the bearing disc 410 is concave downward to form a containing cavity, so that the storage rack 100 only needs to be placed on the bearing disc 410, and the storage rack 100 is not easy to slide off the bearing disc 410, and then the bearing disc 410 is driven to move by the sliding seat to achieve the purpose of transporting the storage rack 100.

[0067] In actual arrangement, two sliding seats can be arranged on the bearing disc 410, and the two sliding seats are arranged at two ends of the bearing disc 410 respectively, so that the bearing disc 410 is controlled to move reciprocatingly at the entrance and exit 510 through the two sliding seats, thereby improving the stability of the bearing disc 410 during movement.

[0068] As shown in Figure 4 , further, the sliding seat comprises a driving member, a guide rod 420 and a sliding block 430, the guide rod 420 is arranged at the entrance and exit 510, the sliding block 430 is movably arranged on the guide rod 420, the driving member is used for controlling the sliding block 430 to move reciprocatingly along the guide rod 420, and the bearing disc 410 is arranged on the sliding block 430.

[0069] In the embodiment of the present application, the driving member is arranged as a pneumatic cylinder, and of course, the driving member can also be arranged as a hydraulic cylinder or an electric telescopic rod. The guide rod 420 is fixed to the edge of the entrance and exit 510 through screwing, welding or other manners, and the guide rod 420 can also be erected below the entrance and exit 510 through a support, and the guide rod 420 is not limited in this regard. One end of the guide rod 420 extends to the outside of the protective box 500, and the other end is located in the protective box 500. The sliding block 430 is movably arranged on the guide rod 420, the driving member is arranged at one end of the guide rod 420, and the movable end of the driving member is connected to the sliding block 430, so that the driving member can control the sliding block 430 to move along the guide rod 420, and the guide rod 420 has a good guiding effect on the movement of the sliding block 430, so that the stability of the movement of the sliding block 430 is higher.

[0070] The bearing disc 410 can be fixed to the sliding block 430 through screwing, welding or other manners, and then the bearing disc 410 is pulled to move reciprocatingly at the entrance and exit 510 through the sliding block 430.

[0071] In use, the sliding block 430 can be controlled to move along the guide rod 420 by running the driving member, and then the bearing disc 410 is driven to move reciprocatingly at the entrance and exit 510, thereby achieving the purpose of conveying the storage rack 100 in and out of the protective box 500.

[0072] In other embodiments, the transfer assembly 400 can also be arranged as a conveying belt, a conveying chain or a walking trolley.

[0073] As shown in Figure 2 , in some embodiments, the moving mechanism 300 comprises a first movement assembly 310, a second movement assembly 320, a rack body 330 and a picking member 340; the rack body 330 is arranged on the protective box 500 through the first movement assembly 310, so as to control the rack body 330 to move horizontally in the protective box 500 through the first movement assembly 310; the picking member 340 is arranged on the rack body 330 through the second movement assembly 320, so as to control the picking member 340 to ascend and descend relative to the rack body 330 through the second movement assembly 320, and the picking member 340 is used for picking the storage rack 100.

[0074] The rack body 330 is horizontally arranged in the protection box 500, and the two ends of the rack body 330 are respectively provided with the first movement assembly 310, and the end of the rack body 330 is movably arranged on the protection box 500 through the first movement assembly 310. Under the control of the first movement assembly 310, the rack body 330 can move horizontally in the protection box 500 along the distribution direction of the cleaning pool 211, the rinsing pool 212 and the drying pool 213.

[0075] Secondly, the second movement assembly 320 is arranged on the rack body 330, and the picking piece 340 is arranged on the second movement assembly 320, and then the picking piece 340 is controlled to ascend and descend relative to the rack body 330 through the second movement assembly 320.

[0076] In use, after the storage rack 100 is sent into the protection box 500 through the transfer assembly 400, the rack body 330 is controlled to move through the first movement assembly 310, the picking piece 340 is controlled to ascend and descend through the second movement assembly 320, and then the picking piece 340 can pick up the storage rack 100 on the transfer assembly 400 and move to the oil cleaning assembly 200, so as to clean and dry the wire.

[0077] As shown in FIGS. Figure 5 and Figure 6 Further, the storage rack 100 comprises a cleaning basket 110 and a plurality of lifting lugs 120 arranged on the cleaning basket 110, and the picking piece 340 comprises a plurality of connecting hooks 341 connected to the second movement assembly 320, and each connecting hook 341 is used for respectively hooking each lifting lug 120 on the cleaning basket 110.

[0078] Specifically, the lifting lugs 120 on the cleaning basket 110 are arranged as four, and the four lifting lugs 120 are uniformly distributed at different positions of the cleaning basket 110. The lifting lugs 120 are fixed on the cleaning basket 110 by welding, screwing, clamping or other means; the lifting lugs 120 can also be arranged as two, three or other numbers, which are not limited.

[0079] At this time, the connecting hooks 341 are arranged corresponding to the number of the lifting lugs 120 on the cleaning basket 110, that is, the connecting hooks 341 are arranged as four. In other embodiments, the connecting hooks 341 can be arranged according to the actual number of the lifting lugs 120.

[0080] When the first movement assembly 310 and the second movement assembly 320 control the picking piece 340 to gradually approach the cleaning basket 110, the connecting hooks 341 are respectively arranged corresponding to the lifting lugs 120, and then the connecting hooks 341 are hooked on the lifting lugs 120, so that the cleaning basket 110 can be lifted and moved to the direction of the oil cleaning assembly 200, thereby achieving the purpose of transporting the cleaning basket 110.

[0081] In actual use, in order to improve the cleaning effect of the wires, for example, a protrusion, a limit bar or a receiving groove can be provided on the cleaning basket 110, so that when multiple wires are placed in the cleaning basket 110, each wire can be spaced apart from each other, reducing the possibility of the wires sticking to each other, making the wire oil cleaning more comprehensive.

[0082] In other embodiments, the picking member 340 may also be configured as a clamping claw or a clamping plate capable of clamping and moving the cleaning basket 110 .

[0083] like Figure 7 As shown, in some embodiments, the first motion component 310 includes a rack 311, a traveling gear 312 and a first motor 313. The rack 311 is arranged on the protective box 500 and extends along the distribution direction of the cleaning pool and the drying part 220. The traveling gear 312 is rotatably arranged on the frame 330 and engaged with the rack 311. The first motor 313 is arranged on the frame 330 and is used to control the traveling gear 312 to roll along the rack 311.

[0084] In an embodiment of the present application, the rack 311 is arranged horizontally and extends along the distribution direction of the cleaning pool 211, the rinsing pool 212 and the drying pool 213. The teeth on the rack 311 are arranged upward, and the rack 311 can be fixed to the inner wall of the protective box 500 by screwing, welding or other means.

[0085] The travel gear 312 is rotatably mounted at the end of the frame 330. The travel gear 312 engages with the rack 311 and is mounted on the rack 311. The first motor 313 can be fixed to the frame 330 by screwing, clamping, or other means. The first motor 313 is preferably a servo motor, but can also be a three-phase asynchronous motor, and the model is not limited. The output shaft of the first motor 313 is horizontally arranged and can be connected to the travel gear 312 by gear transmission or pulley transmission. The output shaft of the first motor 313 can also be directly coaxially fixed to the travel gear 312, so that the first motor 313 can control the rotation of the travel gear 312, and there is no limitation on this.

[0086] During use, the first motor 313 is operated to control the travel gear 312 to rotate, thereby causing the travel gear 312 to roll along the rack 311 , thereby driving the frame 330 to move horizontally in the protective box 500 .

[0087] like Figure 7 As shown, further, the protective box 500 is provided with a guide rail 350 , and the extension direction of the guide rail 350 is consistent with the extension direction of the rack 311 ; the frame 330 is provided with a guide block 351 , and the guide block 351 is movably set on the guide rail 350 .

[0088] Specifically, the guide rail 350 can be fixed to the inner wall of the protective box 500 by screwing, welding or other methods. The guide rail 350 is configured as a stepped structure, that is, the width of the upper end of the guide rail 350 is greater than the width of the lower end.

[0089] At this time, the guide block 351 has a stepped connection groove, and the guide block 351 is movably arranged on the guide rail 350 so that the guide rail 350 fits in the connection groove, and then the guide block 351 is buckled onto the guide rail 350. The guide block 351 can be fixed to the frame 330 by screwing, welding or other means.

[0090] Therefore, in the process of the first motor 313 controlling the traveling gear 312 to roll so that the frame 330 moves horizontally, the frame 330 will also move along the guide rail 350 through the guide block 351, so that the guide rail 350 has a further guiding and supporting effect on the movement of the frame 330, thereby improving the stability of the frame 330 during the movement and improving the use effect.

[0091] In other embodiments, the first motion component 310 may also be configured as a cylinder, a hydraulic cylinder, an electric telescopic rod, or a conveyor belt for controlling the horizontal movement of the frame 330 .

[0092] like Figure 6 As shown, in some embodiments, the second motion component 320 includes a screw rod 321, a second motor 322 and a lifting seat 323. The lifting seat 323 is vertically movable and arranged on the frame 330. The screw rod 321 is rotatably arranged on the frame 330. The screw rod 321 vertically penetrates the lifting seat 323 and is threadedly connected to the lifting seat 323. The picking member 340 is arranged on the lifting seat 323.

[0093] In this embodiment of the present application, the frame 330 is further provided with a vertically extending slide rail, and the lift seat 323 is vertically movable on the slide rail, so that the slide rail can guide and support the lifting and lowering of the lift seat 323, thereby improving the stability of the lifting process of the lift seat 323. The screw rod 321 is vertically arranged and rotatably connected to the frame 330. The screw rod 321 passes through the lift seat 323 and is threadedly connected to the lift seat 323.

[0094] At this time, each connecting hook 341 in the picking member 340 is fixed to the lower portion of the lifting seat 323 by welding, screwing or other means.

[0095] The second motor 322 is fixed on the frame 330 by screwing, welding, clamping or other means. The output shaft of the second motor 322 is vertically arranged, and the output shaft of the second motor 322 can be connected to the lead screw 321 by gear transmission or belt wheel transmission, or the output shaft of the second motor 322 can be coaxially fixed to the lead screw 321, so that the second motor 322 can control the rotation of the lead screw 321, which is not limited.

[0096] In use, the second motor 322 is operated to control the rotation of the lead screw 321, which in turn drives the lifting seat 323 to lift, thereby achieving the purpose of lifting each pickup piece 340, so that each connecting hook 341 is hooked to the lifting lug 120 on the cleaning basket 110.

[0097] In other embodiments, the second movement assembly 320 can also be a gas cylinder, a hydraulic cylinder or an electric telescopic rod for controlling the lifting of the pickup piece 340.

[0098] In summary, the embodiments of the present application provide a part oil cleaning device. When it is necessary to clean the wires, a plurality of wires are loaded into the storage rack 100 together, and then the storage rack 100 loaded with the wires is transported towards the moving mechanism 300 by the transfer assembly 400. Then, the moving mechanism 300 picks up and moves the storage rack 100, so that the storage rack 100 is sequentially fed into, out of, the cleaning tank 211, the rinsing tank 212 and the drying tank 213, and then the wires in the storage rack 100 are cleaned and dried. Finally, the storage rack 100 is transported towards the transfer assembly 400 by the moving mechanism 300 again, and then the storage rack 100 is received by the transfer assembly 400 and the cleaned wires are output, so that the wire cleaning process is highly automated, the labor cost is reduced, and a plurality of wires can be simultaneously cleaned in batches, which greatly improves the efficiency and quality of wire cleaning and solves the problem of low wire cleaning efficiency in the prior art.

[0099] So far, the technical solutions of the present application have been described in combination with the preferred embodiments shown in the drawings, but those skilled in the art can easily understand that the protection scope of the present application is obviously not limited to these specific embodiments, and the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that the technical solutions recorded in the foregoing embodiments can still be modified, or some or all of the technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

[0100] Other embodiments of the application will be apparent to those skilled in the art from consideration of the specification and practice of the application disclosed herein. The application is not limited to the exact details shown and described herein and various modifications and alterations can be made thereto without departing from the scope of the application. It is intended that the application encompass any and all variations or alterations of the application which come within the scope of the general concepts disclosed herein and which fall within the common general knowledge of those skilled in the art. The specification and examples are to be considered exemplary only, with the true scope of the application being indicated by the appended claims.

Claims

1. A parts oiling apparatus, characterized by, The oil cleaning assembly (200), the moving mechanism (300), at least one storage rack (100) and at least one transfer assembly (400) are included. The storage rack (100) is used for placing multiple parts simultaneously. The oil cleaning assembly (200) includes a main box (210) and a drying piece (220), the main box (210) has a cleaning pool; the moving mechanism (300) is used for driving the storage rack (100) to move and sequentially enter and exit the cleaning pool and the area where the drying piece (220) is located, the cleaning pool is used for cleaning oil on the parts in the storage rack (100), and the drying piece (220) is used for drying the parts after cleaning oil. The transfer assembly (400) is used for conveying the storage rack (100) to the moving mechanism (300) or receiving and outputting the storage rack (100) from the moving mechanism (300). The oil cleaning assembly (200) and the moving mechanism (300) are located in the protective box (500), one side of the protective box (500) has an entrance (510), the transfer assembly (400) is arranged below the entrance (510), one end of the transfer assembly (400) is located outside the protective box (500), and the other end is located inside the protective box (500), the transfer assembly (400) is used for driving the storage rack (100) to enter and exit the protective box (500) from the entrance (510). The transfer assembly (400) includes a sliding seat and a bearing disc (410), the bearing disc (410) is arranged on the sliding seat and used for placing the storage rack (100), and the sliding seat is used for driving the bearing disc (410) to reciprocate at the entrance (510) to drive the storage rack (100) to enter and exit the protective box (500). The sliding seat includes a driving piece, a guide rod (420) and a sliding block (430), the guide rod (420) is arranged at the entrance (510), the sliding block (430) is movably arranged on the guide rod (420), the driving piece is used for controlling the sliding block (430) to reciprocate along the guide rod (420), and the bearing disc (410) is arranged on the sliding block (430).

2. The part oiling apparatus of claim 1, wherein The cleaning pool includes a cleaning pool (211) and a rinsing pool (212) arranged on the main box (210), the main box (210) further has a drying pool (213), the cleaning pool (211), the rinsing pool (212) and the drying pool (213) are sequentially arranged along the conveying direction of the storage rack (100), the cleaning pool (211) is used for containing a liquid with a cleaning agent to remove oil stains on the parts, the rinsing pool (212) is used for containing clean water to clean the cleaning agent remaining on the parts, and the drying piece (220) is arranged as a drying fan, and the air outlet end of the drying fan is communicated with the drying pool (213).

3. The part oiling apparatus of claim 1, wherein The moving mechanism (300) comprises a first moving assembly (310), a second moving assembly (320), a frame body (330) and a picking piece (340); the frame body (330) is arranged on the protection box (500) through the first moving assembly (310) so as to control the horizontal movement of the frame body (330) in the protection box (500) through the first moving assembly (310); the picking piece (340) is arranged on the frame body (330) through the second moving assembly (320) so as to control the lifting of the picking piece (340) relative to the frame body (330) through the second moving assembly (320), and the picking piece (340) is used for picking the storage rack (100).

4. The part oiling apparatus of claim 3, wherein The storage rack (100) comprises a cleaning basket (110) and a plurality of lifting lugs (120) arranged on the cleaning basket (110), and the picking piece (340) comprises a plurality of connecting hooks (341) connected to the second moving assembly (320), each of the connecting hooks (341) is used for being respectively hooked to each of the lifting lugs (120) on the cleaning basket (110).

5. The part oiling apparatus of claim 3, wherein The first moving assembly (310) comprises a rack (311), a walking gear (312) and a first motor (313); the rack (311) is arranged on the protection box (500) and extends along the distribution direction of the cleaning pool and the drying piece (220); the walking gear (312) is rotatably arranged on the frame body (330) and engaged with the rack (311); and the first motor (313) is arranged on the frame body (330) and used for controlling the rolling of the walking gear (312) along the rack (311).

6. The part oiling apparatus of claim 5, wherein The protection box (500) is provided with a guide rail (350), and the extension direction of the guide rail (350) is consistent with the extension direction of the rack (311); and the frame body (330) is provided with a guide block (351), and the guide block (351) is movably arranged on the guide rail (350).

7. The part oil removal apparatus according to claim 3, characterized by The second moving assembly (320) comprises a lead screw (321), a second motor (322) and a lifting seat (323); the lifting seat (323) is movably arranged on the frame body (330) in the vertical direction; the lead screw (321) is rotatably arranged on the frame body (330); the lead screw (321) penetrates through the lifting seat (323) in the vertical direction and is threadedly connected with the lifting seat (323); and the picking piece (340) is arranged on the lifting seat (323).