Door plate winding device machining equipment

By designing the processing equipment of door panel winding devices, using the combination of processing countertops, flow countertops, lifting components and conveyor belts, assembly-line processing is achieved, solving the problems of large space occupation and high cost of traditional processing lines, improving processing efficiency and reducing costs.

CN223015668UActive Publication Date: 2025-06-24CHONGQING XIANGRUIJIE AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202422038430.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-06-24
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

Due to the large space and high cost of traditional door panel winding device processing lines, they cannot be suitable for the processing process of winding devices with fewer demands.

Method used

A door panel winding device processing equipment is designed, including processing countertops, flow countertops, lifting components and conveyor belts. Through the combination of slide rails and fixtures, assembly-line processing is realized and space is saved through the laminated structure.

Benefits of technology

The assembly line processing of the door panel winding device is realized, the processing efficiency is improved, and due to the compact design, the space occupation and cost of the equipment are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to door plate winding device machining equipment, and belongs to the technical field of door plate winding device machining. The door plate winding device machining equipment comprises a machining table top, a circulation table top, a lifting assembly and a conveying belt. A through hole is formed in the machining table top, the length direction of the through hole extends in the first direction, a first sliding rail is arranged on the machining table top in the first direction, a first jig is arranged on the machining table top, and the first jig is connected to the first sliding rail in a sliding mode. The machining table top and the circulation table top are arranged at intervals in the second direction, the second direction is parallel to the axial direction of the through hole, and the circulation table top is provided with a second sliding rail extending in the first direction. The lifting assembly comprises a moving seat, a lifting seat and a second jig, the moving seat is slidably connected to the second sliding rail, the lifting seat is movably connected to the moving seat in the second direction, and the second jig is connected to the lifting seat. The conveying belt comprises a first section arranged on the machining table top and a second section arranged on the circulation table top, the first section is connected to the first jig, and the second section is connected to the movable base.
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Description

Technical Field

[0001] The utility model belongs to the technical field of the processing of door panel winding devices, and particularly relates to a processing device for door panel winding devices. Background Art

[0002] Generally, a winding device for lifting a door panel glass is arranged in an automobile door panel. The winding device comprises a seat body, a winding roller is rotatably arranged on the seat body, the seat body is further provided with a motor to drive the winding roller to rotate, two steel ropes are arranged on the winding roller, the two steel ropes are respectively wound on the winding roller in positive and negative directions, and a cover body is usually arranged on the seat body, and the cover body covers the seat body to cover the winding roller therein. When assembling and processing the winding device, there are two processes. One is to wind the steel rope on the winding roller, and the other is to fix the cover body to the seat body by screws. These two processes are usually carried out at different workstations, so it is necessary to transfer the winding device during assembly. However, the traditional flow production line has the disadvantages of large space occupation and high cost, and the processing process of the winding device is less, so that the traditional production line cannot be applied. Content of the Utility Model

[0003] The purpose of the utility model is to provide a processing device for a door panel winding device, which can carry out flow processing and has the advantage of small space occupation.

[0004] To achieve the above-mentioned utility model purpose, the technical scheme adopted by the utility model is as follows: An embodiment of the present application provides a processing device for a door panel winding device, which comprises a processing table, a transfer table, a lifting assembly and a conveyor belt. The processing table is provided with a through hole, the length direction of the through hole extends along a first direction, along the first direction, the processing table is provided with a first slide rail, and the processing table is provided with a first fixture, and the first fixture is slidably connected to the first slide rail. The processing table and the transfer table are arranged at intervals along a second direction, the second direction is parallel to the axial direction of the through hole, and the transfer table is provided with a second slide rail extending along the first direction. The lifting assembly comprises a moving seat, a lifting seat and a second fixture, the moving seat is slidably connected to the second slide rail, the lifting seat is movably connected to the moving seat along the second direction, and the second fixture is connected to the lifting seat. The conveyor belt comprises a first section arranged on the processing table and a second section arranged on the transfer table, the first section is connected to the first fixture, and the second section is connected to the moving seat.

[0005] In some embodiments, it further comprises a fixed seat, a plug-in seat and a clamping component. The fixed seat is arranged on the first fixture and is used for fixing the seat body of the winding device. The plug-in seat is movably arranged on the processing table and is used for plugging into the power socket of the winding device, and the clamping component is used for clamping the motor of the winding device.

[0006] In some embodiments, the clamping member includes a clamping seat and an abutting portion. The clamping seat is provided with a recess, and a notch is provided on the side wall surface of the recess. The abutting portion is movably provided on the processing table, and the abutting portion abuts against the motor of the winding device via the notch.

[0007] In some embodiments, an oil injection assembly is further included. The oil injection assembly includes a first robotic arm and a first oil injection component. The first robotic arm is provided on the processing table, and the first oil injection component is connected to the mobile end of the first robotic arm.

[0008] In some embodiments, the oil injection assembly further includes a second oil injection component. The second oil injection component includes a swing arm rotatably connected to the mobile end. The swing arm is provided with a pressing portion and an oil outlet channel.

[0009] In some embodiments, a wire assembly is further included. The wire assembly includes a third slide rail and a clamping seat. The third slide rail is provided on the processing table, and the clamping seat is slidably connected to the third slide rail. The clamping seat includes a first wall and a second wall arranged oppositely, and the first wall and the second wall are spaced apart.

[0010] In some embodiments, the wire assembly further includes a rope sleeve fixing portion connected to the clamping seat. The rope sleeve fixing portion is provided with a notch through groove.

[0011] In some embodiments, a fastening assembly is further included. The fastening assembly includes a second robotic arm, a discharge channel, a third robotic arm, and a screwing component. The second robotic arm is provided on the processing table, the discharge channel is connected to the mobile end of the second robotic arm, the third robotic arm is provided on the processing table, and the screwing component is connected to the mobile end of the third robotic arm.

[0012] In some embodiments, a limiting assembly is further included. The limiting assembly includes a first limiting wall and a second limiting wall arranged oppositely. A first notch groove is provided on the side of the first limiting wall facing the second limiting wall. A second notch groove is provided on the bottom wall of the first notch groove. The first notch groove and the second notch groove penetrate through the first limiting wall.

[0013] In some embodiments, a cover oil injection assembly is further included for injecting oil into the cover of the winding device. The cover oil injection assembly includes a positioning seat and an insertion channel. The positioning seat is provided with a positioning portion adapted to the inner cavity of the cover. The insertion channel is movably connected to the positioning seat and is used for inserting into the wire threading channel of the cover to inject oil into the wire threading channel.

[0014] The utility model has the following beneficial effects:

[0015] 1. The first fixture can move on the processing table under the action of the first slide rail, and the moving seat can move on the transfer table under the action of the second slide rail, so that the second fixture can move on the transfer table. Moreover, the second fixture can move to the processing table under the action of the lifting seat, so that the first fixture and the second fixture can be respectively arranged at different processing stations on the processing table, that is, the first fixture and the second fixture can form a processing production line.

[0016] 2. The transfer table and the processing table are arranged at intervals to form a stacked structure, which saves the adjustment space required for adjusting the positions of the first fixture and the second fixture, so that the processing equipment of the embodiment of the present application has the advantage of small space occupation. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic structural diagram of the processing equipment of the door panel winding device of the present utility model from one perspective;

[0018] Figure 2 It is a schematic structural diagram of the processing equipment of the door panel winding device of the present utility model from another perspective;

[0019] Figure 3 is Figure 2 an enlarged view of part A in;

[0020] Figure 4 It is a schematic structural diagram of the wire assembly and the oil injection assembly of the present utility model;

[0021] Figure 5 It is a schematic diagram of the cooperation between the screw vibrator and the fastening seat of the present utility model;

[0022] Figure 6 It is a schematic diagram of the arrangement of the guiding groove of the present utility model;

[0023] Figure 7 It is a schematic diagram of the cooperation between the accommodating cavity and the movable part of the present utility model;

[0024] Figure 8 It is a schematic structural diagram of the accommodating cavity of the present utility model;

[0025] Figure 9 It is a schematic diagram of the cooperation between the cover body oil injection assembly and the cover body of the present utility model;

[0026] Figure 10 It is a schematic structural diagram of the cover body oil injection assembly of the present utility model.

[0027] Attached drawing reference numerals: 11 - processing tabletop, 12 - first slide rail, 13 - conveyor belt, 14 - lifting seat, 15 - second slide rail, 16 - through hole, 17 - first fixture, 18 - second fixture, 19 - transfer tabletop, 110 - abutting portion, 111 - fixing seat, 112 - plugging seat, 113 - clamping seat, 2 - oil injection assembly, 21 - first robotic arm, 22 - first oil injection component, 23 - swing arm, 24 - pressing portion, 25 - oil outlet channel, 3 - wire assembly, 31 - third slide rail, 32 - clamping seat, 33 - first wall, 34 - second wall, 35 - wire sleeve fixing portion, 4 - fastening assembly, 41 - second robotic arm, 42 - discharge channel, 43 - third robotic arm, 44 - screwing component, 45 - screw vibrating disk, 46 - fastening seat, 47 - nail discharging channel, 48 - air pumping channel, 49 - control board, 410 - guiding groove, 411 - mating portion, 412 - accommodating cavity, 413 - movable portion, 414 - metering portion, 415 - feeding side wall, 5 - cover oil injection assembly, 51 - positioning seat, 52 - inserting channel, 53 - positioning portion, 6 - limiting assembly, 61 - first limiting wall, 62 - second limiting wall, 63 - first notch groove, 64 - second notch groove, 71 - seat body, 72 - winding roller, 73 - steel wire rope, 74 - cover body. Detailed implementation manner

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. If not specifically specified, the technical means used in the embodiments are conventional means well known to those skilled in the art.

[0029] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0030] The embodiment of the present application provides a processing device for a door panel winding device, including a processing table 11, a transfer table 19, a lifting assembly, and a conveyor belt 13. The processing table 11 is provided with a through hole 16, and the length direction of the through hole 16 extends along a first direction. Along the first direction, the processing table 11 is provided with a first slide rail 12, and the processing table 11 is provided with a first fixture 17, and the first fixture 17 is slidably connected to the first slide rail 12. The processing table 11 and the transfer table 19 are arranged at intervals along a second direction, and the second direction is parallel to the axial direction of the through hole 16. The transfer table 19 is provided with a second slide rail 15 extending along the first direction. The lifting assembly includes a moving seat, a lifting seat 14, and a second fixture 18. The moving seat is slidably connected to the second slide rail 15, the lifting seat 14 is movably connected to the moving seat along the second direction, and the second fixture 18 is connected to the lifting seat 14. The conveyor belt 13 includes a first section arranged on the processing table 11 and a second section arranged on the transfer table 19. The first section is connected to the first fixture 17, and the second section is connected to the moving seat.

[0031] The processing device of the embodiment of the present application can be used for assembling and processing the winding device of the car door panel.

[0032] The processing table 11 is used for installing the components required for the winding device of the setting assembly.

[0033] The first fixture 17 and the second fixture 18 are used for fixing the winding device, which is convenient for assembling the winding device.

[0034] The structures of the first fixture 17 and the second fixture 18 can be the same or different.

[0035] The first direction can be the direction shown by the X axis in the figure. The first direction can be parallel to the horizontal direction. The second direction can be the direction shown by the Y axis in the figure. The second direction can be the vertical direction.

[0036] Under the action of the lifting seat 14, the second fixture 18 includes two working conditions. One is arranged at the processing table 11 through the through hole 16, and the other is below the processing table 11.

[0037] The first fixture 17 can move on the processing table 11 under the action of the first slide rail 12, and the moving seat can move on the transfer table 19 under the action of the second slide rail 15, so that the second fixture 18 can move on the transfer table 19, and the second fixture 18 can move to the processing table 11 under the action of the lifting seat 14, so that the first fixture 17 and the second fixture 18 can be respectively arranged at different processing stations of the processing table 11, that is, the first fixture 17 and the second fixture 18 can form a processing assembly line.

[0038] The structure of the lifting seat 14 can be selected from the existing structures, which will not be elaborated here.

[0039] The rotating tabletop 19 and the processing tabletop 11 are spaced apart to form a stacked structure, saving the adjustment space required to adjust the positions of the first fixture 17 and the second fixture 18, making the processing equipment of the embodiment of the present application have the advantage of small space occupation.

[0040] When the conveyor belt 13 moves, the first fixture 17 can be driven by the conveyor belt. At the same time, the moving seat can be driven by the conveyor belt. Since the first section and the second section are both part of the conveyor belt, the first section and the second section can move synchronously, and then the first fixture 17 and the moving seat are driven to move synchronously through the conveyor belt.

[0041] In the embodiment of the present application, the conveyor belt can be a synchronous belt. The driving structure of the conveyor belt can be selected from existing structures and will not be elaborated here.

[0042] In some embodiments, it further includes a fixed seat 111, a socket 112, and a clamping component. The fixed seat 111 is arranged on the first fixture 17 and is used to fix the seat body 71 of the winding device. The socket 112 is movably arranged on the processing tabletop 11 and is used to plug into the power socket of the winding device. The clamping component is used to clamp the motor of the winding device.

[0043] The fixed seat 111 can be provided with positioning holes adapted to the contour of the seat body 71, so that when the seat body 71 is placed on the fixed seat 111, the seat body 71 can be fixed to the fixed seat 111.

[0044] The socket 112 can be electrically connected to the control device. When the socket 112 is plugged into the power socket of the winding device, the control device can control the rotation of the motor of the winding device, and then can control the rotation of the winding roller 72 of the winding device. The specific way of controlling the motor to work by the control device is well known to those skilled in the art and will not be elaborated here.

[0045] The clamping component clamps the motor, increasing the fixing effect on the winding device.

[0046] In some embodiments, the clamping component includes a clamping seat 113 and an abutting portion 110. The clamping seat 113 is provided with a recess, and a notch is provided on the side wall surface of the recess. The abutting portion 110 is movably arranged on the processing tabletop 11, and the abutting portion 110 abuts against the motor of the winding device through the notch.

[0047] The recess of the clamping seat 113 is used to accommodate the motor, and the abutting portion 110 abuts against the motor, so that the abutting portion 110 and the clamping seat 113 cooperate to fix the motor in the recess.

[0048] In some embodiments, it further includes an oil injection assembly 2, and the oil injection assembly 2 includes a first robotic arm 21 and a first oil injection component 22. The first robotic arm 21 is disposed on the processing table 11, and the first oil injection component 22 is connected to the mobile end of the first robotic arm 21.

[0049] The first robotic arm 21 is used to move the first oil injection component 22 in space. The first robotic arm 21 can be selected from existing products, and its structure and working principle are well-known to those skilled in the art, so details are not described herein.

[0050] The first oil injection component 22 is used to spray a lubricating medium on the surface of the rotating member of the winding device. For example, the seat body 71 can be provided with a driving gear, the driving gear is rotatably connected to the seat body 71, the winding roller 72 can be provided with internal tooth holes, and the winding roller 72 is sleeved on the driving gear through the internal tooth holes, so that when the driving gear rotates, the winding roller 72 can rotate together. The first oil injection component 22 can be used to spray a lubricating medium on the surface of the driving gear. On the one hand, the lubricating medium plays a role in noise reduction, and on the other hand, through lubrication with the lubricating medium, it is convenient to install the winding roller 72 on the driving gear.

[0051] The first oil injection component 22 can be selected from existing products, and its structure and working principle are well-known to those skilled in the art, so details are not described herein.

[0052] In some embodiments, the oil injection assembly 2 further includes a second oil injection component. The second oil injection component includes a swing arm 23, the swing arm 23 is rotatably connected to the mobile end, and the swing arm 23 is provided with a pressing portion 24 and an oil outlet channel 25.

[0053] The second oil injection component can be used to spray a lubricating medium on the surface of the winding roller 72.

[0054] The swing arm 23 is used to adjust the positions of the pressing portion 24 and the oil outlet channel 25, so that the oil injection assembly 2 can have two working states. One is the state where the pressing portion 24 and the oil outlet channel 25 are moved away, and the first oil injection component 22 sprays a lubricating medium on the winding device. The other is the state where a lubricating medium is sprayed on the winding device through the oil outlet channel 25. The second oil injection component can be used to spray a lubricating medium on the winding roller 72. Specifically, when the cover body 74 is not covered on the seat body 71, the winding roller 72 may be detached from the driving gear. Therefore, by pressing the pressing portion 24 against the winding roller 72, the winding roller 72 cannot be detached from the driving gear, and then a lubricating medium is sprayed on the winding roller 72 through the oil outlet channel 25.

[0055] In some embodiments, it further includes a wire assembly 3, and the wire assembly 3 includes a third slide rail 31 and a clamping seat 32. The third slide rail 31 is arranged on the processing table 11, and the clamping seat 32 is slidably connected to the third slide rail 31. The clamping seat 32 includes a first wall 33 and a second wall 34 which are oppositely arranged, and the first wall 33 and the second wall 34 are spaced apart.

[0056] The extending direction of the third slide rail 31 may be parallel to the first slide rail 12.

[0057] The clamping seat 32 moves along the third slide rail 31. When the winding roller 72 winds the steel wire 73, the steel wire 73 is clamped between the first wall 33 and the second wall 34, and the end of the steel wire 73 cannot pass through between the first wall 33 and the second wall 34. As the winding roller 72 winds, the clamping seat 32 can move in the direction close to the winding roller 72, reducing the risk that the end of the steel wire 73 shakes around when winding the steel wire 73.

[0058] In some embodiments, the wire assembly 3 further includes a rope sleeve fixing part 35. The rope sleeve fixing part 35 is connected to the clamping seat 32, and the rope sleeve fixing part 35 is provided with a notch through groove.

[0059] Generally, a rope sleeve is sleeved on the steel wire 73. When the rope sleeve is placed in the notch through groove, the rope sleeve can be fixed to the rope sleeve fixing part 35, improving the fixing effect of the clamping seat 32 on the steel wire 73.

[0060] In some embodiments, it further includes a fastening assembly 4. The fastening assembly 4 includes a second robotic arm 41, a discharge channel 42, a third robotic arm 43, and a screwing component 44. The second robotic arm 41 is arranged on the processing table 11, the discharge channel 42 is connected to the mobile end of the second robotic arm 41, the third robotic arm 43 is arranged on the processing table 11, and the screwing component 44 is connected to the mobile end of the third robotic arm 43.

[0061] The second robotic arm 41 is used to move the discharge channel 42 in space, and the third robotic arm 43 is used to move the screwing component 44 in space.

[0062] The second robotic arm 41 and the third robotic arm 43 can be selected from existing products, and their structures and working principles are well-known to those skilled in the art, so they will not be elaborated here.

[0063] The screwing component 44 can be selected from existing products, and its structure and working principles are well-known to those skilled in the art, so they will not be elaborated here.

[0064] The discharge channel 42 is used to discharge the screw to the screw hole of the cover body 74. Subsequently, the discharge channel 42 moves away, and the screwing component 44 is moved to a specified position to rotate the screw, so that the cover body 74 can be fixed to the seat body 71.

[0065] In some embodiments, the fastening assembly 4 further includes a fastening base 46, a movable part 413, a metering part 414, and a control board 49. The fastening base 46 is provided with a receiving cavity 412. The receiving cavity 412 includes a feeding side wall 415. The feeding side wall 415 is provided with an opening. The bottom wall of the receiving cavity 412 is provided with a nail discharging channel 47. The discharging channel 42 communicates with the nail discharging channel 47. The middle of the nail discharging channel 47 communicates with an air pumping channel 48. The movable part 413 is received in the receiving cavity 412 and movably connected to the fastening base 46. The movable part 413 moves along the feeding side wall 415. The metering part 414 is movably connected to the movable part 413. The moving direction of the metering part 414 is perpendicular to the moving direction of the movable part 413. The metering part 414 is provided with a third notch groove. The opening of the third notch groove faces the opening of the feeding side wall 415. The control board 49 is provided with a guiding groove 410. The guiding groove 410 includes a first section and a second section. The extending direction of the first section is parallel to the moving direction of the movable part 413. From the side of the second section close to the first section to the side far from the first section, the second section is inclined in a direction gradually away from the feeding side wall 415. The metering part 414 is provided with a mating part 411. The mating part 411 is inserted into the guiding groove 410.

[0066] The metering part 414 cooperates with the feeding side wall 415 to quantitatively convey screws to the discharging channel 42.

[0067] The fastening assembly 4 may further include a screw vibrating disk 45. The opening of the feeding side wall 415 is docked with the discharging port of the screw vibrating disk 45. Since the opening of the third notch groove faces the opening of the feeding side wall 415, only a quantified number of screws can enter the space enclosed by the feeding side wall 415 and the third notch groove.

[0068] When the screws enter this space, the heads of the screws are stuck above the third notch groove, so that the screws cannot leak from the third notch groove.

[0069] When the movable part 413 moves along the feeding side wall 415, the third notch groove of the metering part 414 can carry the screws away from the opening of the feeding side wall 415. And as the movable part 413 moves, the screws can be aligned with the nail discharging channel 47.

[0070] The control board 49 is used to control the movement of the metering part 414. Specifically, under the action of the first section, the metering part 414 moves along the feeding side wall 415 following the movable part 413. When the mating part 411 moves to the second section, the metering part 414 is driven to move away from the feeding side wall 415. At this time, the third notch groove moves away, and the screw can fall from the third notch groove into the nail discharging channel 47. At this time, the metered screws are input into the nail discharging channel 47. Since the nail discharging channel 47 is communicated with the discharging channel 42, the metered screws can be conveyed to the discharging channel 42. After that, the movable part 413 resets, and the inlet of the nail discharging channel 47 is closed by the movable part 413. There is a gas pumping channel 48 arranged in the middle of the nail discharging channel 47. By pumping gas into the nail discharging channel 47 through the gas pumping channel 48, the screws can be pumped from the nail discharging channel 47 to the discharging channel 42.

[0071] The nail discharging channel 47 can be communicated with the discharging channel 42 through a hose.

[0072] The structure and working principle of the screw vibrating disc 45 are well-known to those skilled in the art and will not be elaborated here.

[0073] It should be noted that at the connection of the gas pumping channel 48 and the nail discharging channel 47, it is necessary to ensure that when the gas pumping channel 48 inputs gas into the nail discharging channel 47, the screws can be sent to the discharging channel 42.

[0074] In some embodiments, a limiting component 6 is further included. The limiting component 6 includes a first limiting wall 61 and a second limiting wall 62 which are oppositely arranged. A first notch groove 63 is arranged on the side of the first limiting wall 61 facing the second limiting wall 62. A second notch groove 64 is arranged on the bottom wall of the first notch groove 63. The first notch groove 63 and the second notch groove 64 penetrate through the first limiting wall 61.

[0075] An elastic member is sleeved on the peripheral wall of the steel rope 73. In order to facilitate the winding of the steel rope 73, it is necessary to fix the position of the elastic member. The second notch groove 64 is used for the steel rope 73 to pass through, and the bottom wall of the first notch groove 63 is used for the elastic member to abut against. Similarly, a third notch groove is arranged on the side of the second limiting wall 62 facing the first limiting wall 61, and a fourth notch groove is arranged on the bottom wall of the third notch groove. The third notch groove and the fourth notch groove penetrate through the second limiting wall 62. The fourth notch groove is used for the steel rope 73 to pass through, and the bottom wall of the third notch groove is used for the elastic member to abut against. With the cooperation of the first limiting wall 61 and the second limiting wall 62, the position of the elastic member can be fixed.

[0076] In some embodiments, it further includes a cover oil injection assembly 5 for injecting oil into the cover 74 of the winding device. The cover oil injection assembly 5 includes a positioning seat 51 and an insertion channel 52. The positioning seat 51 is provided with a positioning portion 53 adapted to the inner cavity of the cover 74. The insertion channel 52 is movably connected to the positioning seat 51 and is used for being inserted into the wire threading channel of the cover 74 to inject oil into the wire threading channel.

[0077] The wire threading channel is a structure for the cover 74 to cooperate with the base body 71 to form a structure for the steel wire rope 73 to pass through the cover 74.

[0078] Generally, a lubricating medium needs to be injected into the wire threading channel.

[0079] The positioning portion 53 is used for limiting the cover 74 when the cover 74 is covered on the positioning seat 51. The insertion channel 52 can be movably connected to the positioning seat 51 along the axial direction of the wire threading channel. When the cover 74 is arranged on the fixed seat 111, the insertion channel 52 can be inserted into the wire threading channel, and then the lubricating medium is discharged through the insertion channel 52, so that the lubricating medium can be sprayed into the wire threading channel.

[0080] Furthermore, the positioning portion 53 can be provided with a discharge port through which the lubricating medium can be discharged, so that the inner part of the cover 74 can be sprayed with the lubricating medium through the positioning portion 53.

[0081] It should be noted that the structure of the winding device described in the embodiments of the present application is the content disclosed in the prior art.

[0082] When the processing equipment of the door panel winding device according to the embodiment of the present application is working, first place the seat body 71 of the winding device on the fixed seat 111 of the first fixture 17, insert the plug-in seat 112 into the power jack of the winding device, and the clamping component fixes the motor. Subsequently, the first oil injection component 22 sprays a lubricating medium onto the driving gear. One end of a steel wire 73 is wound forward around the winding roller 72, and the other end is clamped between the first wall 33 and the second wall 34 of the clamping seat 32, so that the pressing part 24 of the second oil injection component presses on the winding roller 72, and the winding roller 72 rotates forward to wind part of the steel wire 73 around the winding roller 72. During winding, the clamping seat 32 moves towards the direction close to the winding roller 72, and at the same time, the oil outlet channel 25 sprays a lubricating medium onto the surface of the winding roller 72. Then, another steel wire 73 is manually wound backward around the winding roller 72 preliminarily, and then the cover body 74 is covered on the seat body 71. The motor drives the winding roller 72 to rotate backward, so that both steel wires 73 are wound around the winding roller 72. It should be noted that when the winding roller 72 rotates backward, the steel wire 73 wound forward unwinds, and at this time, the clamping seat 32 moves backward to play a role in limiting the end of the steel wire 73. After winding, the first fixture 17 moves to the station where the fastening component 4 is located for fastening screw operation. At the same time, the second fixture 18 moves to the assembly station where the first fixture 17 was located before moving, and the lifting seat 14 enables the second fixture 18 to move to the processing table 11, facilitating the assembly operation of another winding device, forming an assembly line processing and improving the processing efficiency.

[0083] The above embodiments only describe the preferred mode of the present invention, and do not limit the scope of the present invention. Without departing from the design spirit of the present invention, various deformations, variations, modifications, and replacements made by those of ordinary skill in the art to the technical solution of the present invention shall fall within the protection scope determined by the claims of the present invention.

Claims

1. A door panel winding device processing equipment, characterized in that: include: A processing table (11), the processing table (11) being provided with a through hole (16), the length direction of the through hole (16) extending along a first direction, the processing table (11) being provided with a first slide rail (12) along the first direction, the processing table (11) being provided with a first fixture (17), the first fixture (17) being slidably connected to the first slide rail (12); a rotating table (19), wherein the processing table (11) and the rotating table (19) are arranged at intervals along a second direction, the second direction is parallel to the axial direction of the through hole (16), and the rotating table (19) is provided with a second slide rail (15) extending along the first direction; A lifting assembly comprises a moving seat, a lifting seat (14) and a second fixture (18), wherein the moving seat is slidably connected to the second slide rail (15), the lifting seat (14) is movably connected to the moving seat along the second direction, and the second fixture (18) is connected to the lifting seat (14); The conveyor belt (13) comprises a first section arranged on the processing table (11) and a second section arranged on the circulation table (19), wherein the first section is connected to the first fixture (17) and the second section is connected to the moving seat.

2. The door panel winding device processing equipment according to claim 1, characterized in that: Also includes: A fixing seat (111), arranged on the first fixture (17), and used for fixing a seat body (71) of the winding device; A socket (112) is movably arranged on the processing table (11) and is used to be plugged into a power socket of the winding device; A clamping component is used to clamp the motor of the winding device.

3. The door panel winding device processing equipment according to claim 2, characterized in that: The clamping member comprises: A clamping seat (113), wherein the clamping seat (113) is provided with a recessed portion, and a side wall surface of the recessed portion is provided with a notch; The abutting portion (110) is movably arranged on the processing table (11), and the abutting portion (110) abuts against the motor of the winding device via the notch.

4. The door panel winding device processing equipment according to claim 1, characterized in that: It also includes an oil injection assembly (2), the oil injection assembly (2) comprising: A first mechanical arm (21), arranged on the processing table (11); The first oil injection component (22) is connected to the moving end of the first mechanical arm (21).

5. The door panel winding device processing equipment according to claim 4, characterized in that: The oil injection assembly (2) further comprises a second oil injection component, the second oil injection component comprising a swing arm (23), the swing arm (23) being rotatably connected to the movable end, the swing arm (23) being provided with a pressing portion (24) and an oil outlet channel (25).

6. The door panel winding device processing equipment according to claim 1, characterized in that: It also includes a wire assembly (3), wherein the wire assembly (3) includes: A third slide rail (31), arranged on the processing table (11); The locking seat (32) is slidably connected to the third slide rail (31), and the locking seat (32) comprises a first wall (33) and a second wall (34) which are arranged opposite to each other, and the first wall (33) and the second wall (34) are arranged at an interval.

7. The door panel winding device processing equipment according to claim 6, characterized in that: The wire assembly (3) further comprises a rope loop fixing portion (35), wherein the rope loop fixing portion (35) is connected to the clamping seat (32), and the rope loop fixing portion (35) is provided with a notch through groove.

8. The door panel winding device processing equipment according to claim 1, characterized in that: It also includes a fastening assembly (4), wherein the fastening assembly (4) includes: A second mechanical arm (41), disposed on the processing table (11); A discharge channel (42) connected to the moving end of the second mechanical arm (41); A third mechanical arm (43), arranged on the processing table (11); The twisting component (44) is connected to the moving end of the third mechanical arm (43).

9. The door panel winding device processing equipment according to claim 1, characterized in that: The invention also comprises a limiting component (6), wherein the limiting component (6) comprises a first limiting wall (61) and a second limiting wall (62) which are arranged opposite to each other, wherein a first notch groove (63) is arranged on a side of the first limiting wall (61) facing the second limiting wall (62), a second notch groove (64) is arranged on a bottom wall of the first notch groove (63), and the first notch groove (63) and the second notch groove (64) penetrate the first limiting wall (61).

10. The door panel winding device processing equipment according to claim 1, characterized in that: It also includes a cover oil injection assembly (5) for injecting oil into the cover (74) of the winding device, and the cover oil injection assembly (5) includes: A positioning seat (51) is provided with a positioning portion (53) adapted to the inner cavity of the cover body (74); The insertion channel (52) is movably connected to the positioning seat (51) and is used for being inserted into the threading channel of the cover body (74) to inject oil into the threading channel.