Automobile window switch shell production equipment
By designing automated production equipment for automotive window switch housings, the problems of inconsistent gate removal and material handling were solved, achieving an efficient and controllable production process, reducing manual intervention, and improving production efficiency and automation.
Patent Information
- Application Number
- CN202520485059.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-19
AI Technical Summary
In the existing technology, the production process of automotive window switch housings involves inconsistent manual operations, is tedious and labor-intensive, and affects production efficiency due to issues with gate removal and material handling.
Design a production equipment for automotive window switch housings, including an injection molding device, a transfer device, a cleaning device, and a unloading device. The equipment uses a transfer fixture to hold the injection-molded housings for automated gate shearing and collection. Combined with a rotating disk and a unloading guide plate, it achieves automated production and reduces manual intervention.
It automates the gate shearing process and makes counting convenient, production efficiency is not affected by manual labor, shearing force is controllable, adaptability is high, the overall operation is integrated, and the intensity of manual labor is reduced.
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Figure CN223864232U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of automobile parts production, and specifically relates to an automobile window switch shell production equipment. BACKGROUND
[0002] The automobile window switch is mostly assembled by a plastic shell, and a circuit board and a connector are arranged inside, and in the production process of the automobile window switch shell, an injection molding machine is needed for production, and the injection molding machine uses thermoplastic plastic to make the automobile window switch shell by using a forming mold.
[0003] In the prior art, the injection gate is left on the switch shell produced by the injection molding machine, and is removed by artificial shearing in the subsequent process, and the removal state of the injection gate is inconsistent due to the difference in artificial proficiency and strength, and manual counting is more cumbersome; after being made, the switch shell is directly demolded and falls down, and subsequent shell arrangement needs to be manually performed, which increases the labor intensity and the production efficiency is affected by the manual operation. UTILITY MODEL CONTENTS
[0004] Therefore, the utility model solves the technical problems of the defects of the injection gate removal and material taking in the prior art, and provides an automobile window switch shell production equipment.
[0005] The above technical purpose of the utility model is achieved by the following technical scheme:
[0006] An automobile window switch shell production equipment, comprising an injection molding device, a transfer device, a cleaning device and a material falling device, the injection molding device and the cleaning device are arranged side by side, and the cleaning device is close to one end of the injection molding device, the transfer device is arranged above the injection molding device and extends to the cleaning device, the material falling device is arranged below the side of the cleaning device away from the injection molding device, the injection molding device comprises an injection molding part, an injection molding mold and an injection molding workbench, the injection molding part is fixed on the injection molding workbench and is connected with a raw material tank, the injection molding mold is arranged on the injection molding workbench opposite to the injection molding part, the transfer device comprises a transfer frame, a transfer track and a transfer clamp, the transfer clamp is arranged to slide along the length direction of the transfer track, the transfer track is arranged along the width direction of the injection molding workbench and is fixed on the transfer frame, the transfer frame is fixed on the injection molding workbench, the cleaning device comprises a cleaning driving part and a cutting part, the cutting part is arranged close to the top of the cleaning driving part, the material falling device comprises a guide chute and a storage frame, and the bottom of the guide chute is fixed with the storage frame.
[0007] By adopting the above technical scheme, the injection molding production of the vehicle window switch shell is completed at the injection molding device, the injection molded vehicle window switch shell is clamped and transferred to the cleaning device by the transfer clamp for gate shearing cleaning and collection of gate waste, and then collected by the blanking device, the whole process reduces manual participation, integrates operation and is convenient for counting, the production efficiency is not affected by manual operation, the shearing gate force and distance are controllable, and the adaptability is high.
[0008] Further, the injection molding part includes an injection molding frame, a fixed mold module, and an injection molding machine, the fixed mold module is installed on the injection molding frame and connected with the output end of the injection molding machine, the injection molding machine is connected with a raw material tank, the injection molding mold includes a male module, a template, a push plate, and a mold frame, the male module, the template, and the push plate are all slidably installed on the mold frame, the male module is fixed on the template and passes through the push plate, a concave mold cavity is formed on the fixed mold module corresponding to the injection molding mold, the push plate is slidably arranged relative to the template, a plurality of limiting sliding ways are extended outside the template along the sliding direction, a sliding column is extended outside the push plate corresponding to the limiting sliding way, and the sliding column is slidably arranged in the limiting sliding way.
[0009] By adopting the above technical scheme, the injection molding part and the injection molding mold cooperate to complete the injection molding operation, the template slides on the mold frame to drive the template, the push plate, and the male module to cooperate with the fixed mold module, then the injection molding machine starts to injection mold in the concave mold cavity to form the vehicle window switch shell, then the template drives the push plate and the male module to completely separate from the fixed mold module, the push plate is controlled to separate the shell from the male module to complete the shell manufacturing, the sliding column cooperates with the limiting sliding way to avoid the push plate from completely separating from the template, and subsequent operation is avoided.
[0010] Further, the transfer clamp is arranged above the injection molding part and the injection molding mold, the transfer clamp includes a transfer clamp jaw, a transfer lifting block, and a sliding drive block, the transfer lifting block is arranged at the bottom of the sliding drive block and drives the transfer clamp jaw to lift, and the transfer clamp jaw is in a U-shaped structure with an opening downward and an abrasion-resistant pad is arranged inside.
[0011] By adopting the above technical scheme, before the push plate starts to push away, the transfer clamp jaw first clamps the injection molded shell to avoid the injection molded shell from falling on the injection molding workbench, and then clamps the injection molded shell to the next station after completely separating.
[0012] Furthermore, a cleaning drive component is provided at the end of the transfer track away from the injection molding worktable. The cleaning drive component includes a cleaning frame, a rotating disk, multiple receiving slots, and a rotation drive component. The rotating disk is rotatably mounted on the cleaning frame. The rotating disk is circular and its axis is set along the length direction of the injection molding worktable. The receiving slots are fixed on the rotating disk. The rotation drive component controls the rotation of the rotating disk. The rotation drive component includes a drive gear ring, a rotating gear, and a main drive motor. The drive gear ring is coaxially arranged with the rotating disk and fixed on the rear end face of the rotating disk. The rotating gear meshes with the drive gear ring and is located on one side of the bottom of the drive gear ring. The main drive motor controls the rotation of the rotating gear.
[0013] By adopting the above technical solution, the transfer gripper holds the window switch housing and slides it along the gripping track to the receiving groove on the left. Then, the window switch housing rotates clockwise with the rotating disk, rotating 90° each time to complete the corresponding operation.
[0014] Furthermore, the receiving groove is L-shaped and arranged in a circumferential array on the rotating disk. The opening of the receiving groove is located away from the center of the rotating disk. A clearance groove corresponding to the transfer gripper is provided on the side of the receiving groove. A limit strip extends from one corner of the bottom edge of the receiving groove away from the rotating disk. The limit strip is set perpendicular to the bottom edge of the receiving groove. The height of the limit strip does not exceed one-third of the height of the window switch housing.
[0015] By adopting the above technical solution, the transfer gripper slowly falls down and engages with the clearance groove to place the window switch housing. The limit strip engages with the bottom of the window switch housing to prevent displacement before the gate is cut off, ensuring accurate subsequent cutting position. The limit strip has a limited height and does not affect the gripping, placement, and subsequent cutting operations, thus avoiding structural interference.
[0016] Furthermore, the rotating disk is also provided with a circumferential array of operating holes, each of which corresponds to a receiving groove. When the rotating disk drives the operating holes and receiving grooves to rotate to the top, they cooperate with the cutting component. The cutting component includes a cutting frame, a cutting clamp, and a cutting blade. The cutting clamp and the cutting blade are both fixed on the cutting frame. The cutting clamp is slidably disposed in the operating hole at the top along the axial direction of the rotating disk. The cutting blade is vertically slidably disposed near the top of the rotating disk. A waste trough is also provided in the middle of the rotating disk, and the waste trough is installed on the cleaning frame.
[0017] By adopting the above technical solution, the operating hole allows the cutting part to work smoothly when the window switch housing on the rotating disk is rotated to the corresponding position, and does not affect the rotation operation of the rotating disk when it rotates; the waste generated by cutting falls into the waste trough under the action of gravity, which is convenient for centralized treatment.
[0018] Furthermore, the rotating disk is also provided with multiple inclined material guide plates. The material guide plates are arranged in an array along the circumference of the rotating disk and correspond to the number of receiving grooves. The material guide plate near the material feeding device is inclined and the distance between the top and the center of the rotating disk is less than the distance between the bottom and the center of the rotating disk.
[0019] By adopting the above technical solution, the material guide plate and the material guide groove of the material dropping device work together to guide the window switch housing to fall freely and enter the storage frame for overall storage; the design of the material guide plate avoids the material guide groove being too long and affecting the rotation of the turntable.
[0020] Furthermore, the distance between the material guide plate and the material guide trough on the side near the material dropping device is less than the width of the window switch housing. The material guide trough is inclined and the distance between its top and the material guide plate is less than the distance between its bottom and the material guide plate. The bottom of the material guide trough is fixed to the storage frame. A baffle plate extends vertically from the side of the material guide trough away from the rotating disk.
[0021] By adopting the above technical solution, a gap is left between the material drop guide plate and the material guide trough to prevent the material drop guide plate on the left side from affecting the loading operation of the transfer gripper; the distance between the material drop guide plate and the material guide trough is also less than the width of the window switch housing to prevent the window switch housing from falling out of the gap and not smoothly entering the storage frame, and the baffle plate prevents the window switch housing from popping out.
[0022] In summary, the technical solution of this utility model has the following advantages:
[0023] 1. The automotive window switch housing production equipment provided by this utility model completes the injection molding production of the window switch housing at the injection molding device. The injection-molded window switch housing is transferred by the transfer device through the transfer fixture to the cleaning device for gate shearing and cleaning and gate waste collection. After that, it is collected by the unloading device. The whole process reduces manual intervention, is integrated and easy to count, the production efficiency is not affected by manual labor, and the shearing force and distance of the gate are controllable, with high adaptability.
[0024] 2. The automotive window switch housing production equipment provided by this utility model allows the window switch housing to rotate clockwise with the rotating disc, rotating 90° each time and completing the automatic cutting operation, with a high degree of automation in the cutting process.
[0025] 3. The automotive window switch housing production equipment provided by this utility model uses a material guide plate and a material guide trough of the material dropping device to guide the window switch housing to fall freely and enter the storage frame for overall storage. Attached Figure Description
[0026] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0027] Figure 1 This is a schematic diagram of the overall structure of an automotive window switch housing production equipment provided in one embodiment of the present invention;
[0028] Figure 2 This is a partial structural schematic diagram of an injection molding device provided in one embodiment of the present invention;
[0029] Figure 3 This is a schematic diagram of the structure of a transfer device provided in one embodiment of the present invention;
[0030] Figure 4 This is a schematic diagram of the cleaning device provided in one embodiment of the present invention;
[0031] Figure 5 This is a schematic diagram of the structure of a rotation drive component provided in one embodiment of the present invention.
[0032] Explanation of reference numerals in the attached figures:
[0033] 1. Injection molding unit; 2. Injection molded part; 21. Injection frame; 22. Fixed module; 221. Mold cavity; 23. Injection molding machine; 24. Raw material tank; 3. Injection mold; 31. Thrust module; 32. Template; 321. Limiting slide; 33. Ejector plate; 331. Sliding column; 34. Mold frame; 4. Injection worktable; 5. Transfer device; 51. Transfer frame; 52. Transfer track; 53. Transfer fixture; 531. Transfer gripper; 5311. Wear-resistant pad; 532. Transfer lifting block; 533. Sliding drive block 6. Cleaning device; 7. Cleaning drive component; 71. Cleaning frame; 711. Waste trough; 72. Rotary disc; 721. Operating hole; 722. Discharge guide plate; 73. Receiving groove; 731. Clearance groove; 732. Limiting strip; 74. Rotation drive component; 741. Drive gear ring; 742. Rotating gear; 743. Main drive motor; 8. Cutting component; 81. Cutting frame; 82. Cutting clamp; 83. Cutting blade; 9. Discharge device; 91. Guide trough; 911. Baffle plate; 92. Storage frame. Detailed Implementation
[0034] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only for explaining the present invention and are not intended to limit the present invention.
[0035] A manufacturing equipment for automotive window switch housings, such as Figure 1 As shown, the device includes an injection molding unit 1, a transfer device 5, a cleaning device 6, and a discharge device 9. The injection molding unit 1 and the cleaning device 6 are arranged side by side, with the cleaning device located near the left end of the injection molding unit. The transfer device 5 is located above the injection molding unit 1 and extends to the cleaning device 6. The discharge device 9 is located below the cleaning device 6 on the side away from the injection molding unit 1. The injection molding unit 1 includes an injection molded part 2, an injection mold 3, and an injection worktable 4. The injection molded part 2 is fixed on the injection worktable 4 and connected to a raw material tank 24. The injection mold 3 and the injection molded part 2 are arranged opposite each other on the injection worktable 4. The cleaning device 6 includes a cleaning drive 7 and a cutting component 8. The cutting component 8 is located near the top of the cleaning drive 7. The discharge device 9 includes a guide trough 91 and a receiving frame 92. The bottom of the guide trough 91 is fixed to the receiving frame 92. The window switch housing is produced by injection molding at injection molding unit 1. The completed window switch housing is transferred to cleaning unit 6 by transfer device 5 through transfer fixture 53 for gate shearing and cleaning. After gate waste is collected, it is collected by unloading device 9. The whole process reduces manual intervention, is integrated and easy to count, production efficiency is not affected by manual labor, and the shearing force and distance of the gate can be controlled, with high adaptability.
[0036] like Figure 1 and Figure 2As shown, the injection molded part 2 includes an injection frame 21, a fixed module 22, and an injection molding machine 23. The fixed module 22 is installed on the injection frame 21 and connected to the output end of the injection molding machine 23. The injection molding machine 23 is connected to a raw material tank 24. The injection mold 3 includes a convex module 31, a template 32, a push plate 33, and a mold base 34. The convex module 31, the template 32, and the push plate 33 are all slidably installed on the mold base 34 and slidably positioned relative to the mold base 34. The convex module 31 is fixed on the template 32 and extends out of the push plate 33. A cavity 221 is opened on the fixed module 22 corresponding to the injection mold 3. The push plate 33 is slidably positioned relative to the template 32. Multiple limiting slides 321 extend along the sliding direction on the outer side of the template 32. A sliding column 331 extends on the outer side of the push plate 33 corresponding to the limiting slide 321. The sliding column 331 is slidably positioned within the limiting slide 321. Injection part 2 and injection mold 3 cooperate to complete the injection molding operation. The template 32 slides on the mold frame 34, causing the template 32, push plate 33 and convex module 31 to cooperate with the fixed module 22. Then, the injection molding machine 23 starts to inject into the cavity 221 to form the car window switch shell. After that, the template 32 drives the push plate 33 and convex module 31 to separate from the fixed module 22 as a whole. Then, the push plate 33 is controlled to push the shell to separate from the convex module 31 to complete the shell production. The sliding column 331 cooperates with the limiting slide 321 to prevent the push plate 33 from completely separating from the template 32, so as to avoid inconvenience in subsequent operations. The overall injection molding, mold closing and demolding process is similar to that in the prior art.
[0037] like Figure 1 and Figure 3 As shown, the transfer device 5 includes a transfer frame 51, a transfer track 52 and a transfer clamp 53. The transfer clamp 53 is slidably arranged along the length direction of the transfer track 52. The transfer track 52 is arranged along the width direction of the injection molding worktable 4 and fixed on the transfer frame 51. The transfer frame 51 is fixed on the injection molding worktable 4.
[0038] The transfer fixture 53 is positioned above the injection molded part 2 and the injection mold 3. The transfer fixture 53 includes a transfer gripper 531, a transfer lifting block 532, and a sliding drive block 533. The transfer lifting block 532 is located at the bottom of the sliding drive block 533 and drives the transfer gripper 531 to rise and fall. The transfer gripper 531 is U-shaped with its opening facing downwards and has a wear-resistant pad 5311 on its inner side. Before the push plate 33 is initiated and pushed away, the transfer gripper 531 first clamps the injection molded part to prevent it from falling onto the injection worktable 4. After completely detaching, it clamps the injection molded part to the next work station.
[0039] like Figure 1 , Figure 3 and Figure 4As shown, a cleaning drive component 7 is provided at the end of the transfer track 52 away from the injection molding worktable 4. The cleaning drive component 7 includes a cleaning frame 71, a rotating disk 72, multiple receiving slots 73, and a rotation drive component 74. The rotating disk 72 is rotatably mounted on the cleaning frame 71. The rotating disk 72 is circular and its axis is set along the length of the injection molding worktable 4. The receiving slots 73 are fixed on the rotating disk 72 and are set in the four directions of up, down, left, and right. The rotation drive component 74 controls the rotation of the rotating disk 72. The transfer gripper 531 clamps the window switch housing and slides it along the clamping track and transports it to the receiving slot 73 on the left. Then, the window switch housing rotates clockwise with the rotating disk 72, rotating 90° each time to complete the corresponding operation.
[0040] The receiving grooves 73 are L-shaped and arranged in a circumferential array on the rotating disk 72. The openings of the receiving grooves 73 are located away from the center of the rotating disk 72 and all face outwards. A clearance groove 731 corresponding to the transfer gripper 531 is provided on the side of the receiving grooves 73. A limiting strip 732 extends from a corner of the bottom edge of the receiving groove 73 away from the rotating disk 72. The limiting strip 732 is perpendicular to the bottom edge of the corresponding receiving groove, and its height does not exceed one-third of the height of the window switch housing. After the transfer gripper 531 slowly descends and engages with the clearance groove 731, the window switch housing is placed. The limiting strip 732 engages with the bottom of the window switch housing to prevent displacement before the gate is cut, ensuring accurate subsequent cutting. The limited height of the limiting strip 732 does not affect the gripping, placement, and subsequent cutting operations, avoiding structural interference.
[0041] like Figure 3 , Figure 4 and Figure 5 As shown, the rotating disk 72 is also provided with a circumferential array of operating holes 721, each of which corresponds to a receiving groove 73. When the rotating disk 72 rotates the operating holes 721 and the receiving grooves 73 to the top, they engage with the cutting part 8. The operating holes 721 facilitate the smooth operation of the cutting part 8 when the window switch housing on the rotating disk 72 is rotated to the corresponding position, and do not affect the rotation operation of the rotating disk 72.
[0042] The cutting component 8 includes a cutting frame 81, a cutting clamp 82, and a cutting blade 83. Both the cutting clamp 82 and the cutting blade 83 are fixed to the cutting frame 81. The cutting clamp 82 is slidably disposed along the axial direction of the rotating disk 72 within the top operating hole 721. The cutting blade 83 is vertically slidably disposed near the top of the rotating disk 72. A waste trough 711 is also provided in the middle of the rotating disk 72. The waste trough 711 is mounted on a cleaning frame 71, and the cleaning frame 71 extends through the rotating disk 72 to form a mounting bracket for the waste trough 711. Waste generated during cutting falls into the waste trough 711 under gravity for convenient centralized processing.
[0043] like Figure 4 and Figure 5As shown, the rotation drive component 74 includes a drive gear ring 741, a rotating gear 742, and a main drive motor 743. The drive gear ring 741 is coaxially arranged with the rotating disk 72 and fixed to the rear end face of the rotating disk 72. The rotating gear 742 meshes with the drive gear ring 741 and is located on the rear bottom side of the drive gear ring 741. The main drive motor 743 controls the rotation of the rotating gear 742. The rotation of the rotating gear 742 drives the drive gear ring 741 to rotate, thereby controlling the rotation of the rotating disk 72 and adjusting the position of the receiving groove 73.
[0044] like Figure 4 and Figure 5 As shown, the rotating disk 72 is also equipped with multiple inclined material guide plates 722. The material guide plates 722 are arranged in an array along the circumference of the rotating disk 72 and correspond to the number of receiving grooves 73. The material guide plates 722 near the material feeding device 9 are inclined, and the distance between the top and the center of the rotating disk 72 is smaller than the distance between the bottom and the center of the rotating disk 72. The design of the material guide plates 722 avoids the material guide groove 91 from being too long and affecting the rotation of the rotating disk 72.
[0045] The distance between the unloading guide plate 722 and the guide trough 91 on the side near the unloading device 9 is less than the width of the window switch housing. The guide trough 91 is inclined, and the distance between its top and the unloading guide plate 722 is less than the distance between its bottom and the unloading guide plate 722. The bottom of the guide trough 91 is fixed to the storage frame 92. A gap is left between the unloading guide plate 722 and the guide trough 91 to prevent the unloading guide plate 722 on the left side from affecting the loading operation of the transfer gripper 531; the distance between the unloading guide plate 722 and the guide trough 91 is also less than the width of the window switch housing to prevent the window switch housing from falling out of the gap and not smoothly entering the storage frame 92.
[0046] The material guide plate 722 cooperates with the material guide trough 91 of the material dropping device 9 to guide the window switch housing to fall freely and enter the storage frame 92 for overall storage. A baffle plate 911 extends vertically from the side of the material guide trough 91 away from the rotating disk 72 to prevent the window switch housing from popping out.
[0047] Working principle and usage of this automotive window switch housing manufacturing equipment:
[0048] The injection molded part 2 and the injection mold 3 work together to complete the injection molding operation. The injection molding machine 23 separates from the injection mold 3 to complete the demolding. After demolding, the transfer gripper 531 holds the window switch housing and slides along the gripping track to transport the window switch housing to the cleaning device 6. The window switch housing is placed on the receiving groove 73 on the left side. Then the rotating disk 72 rotates 90° clockwise. The gate of the window switch housing is cut off by the top structural cutting part 8 of the rotating disk 72. Then the rotating disk 72 rotates 90° clockwise again. The window switch housing separates from the receiving groove 73 under the action of gravity and falls freely. It is guided into the storage frame 92 by the unloading guide plate 722 and the guide groove 91.
[0049] The foregoing description illustrates and describes preferred embodiments of the present invention. As previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or related technical or knowledge. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.
Claims
1. A manufacturing equipment for automotive window switch housings, characterized in that, The system includes an injection molding device (1), a transfer device (5), a cleaning device (6), and a discharge device (9). The injection molding device (1) and the cleaning device (6) are arranged side by side, with the cleaning device (6) closer to one end of the injection molding device (1). The transfer device (5) is located above the injection molding device (1) and extends to the cleaning device (6). The discharge device (9) is located below the cleaning device (6) on the side away from the injection molding device (1). The injection molding device (1) includes an injection molded part (2), an injection mold (3), and an injection worktable (4). The injection molded part (2) is fixed on the injection worktable (4) and connected to a raw material tank (24). The injection mold (3) is arranged opposite to the injection molded part (2) in the injection molding process. On the workbench (4), the transfer device (5) includes a transfer frame (51), a transfer track (52), and a transfer clamp (53). The transfer clamp (53) is slidably arranged along the length direction of the transfer track (52). The transfer track (52) is arranged along the width direction of the injection molding workbench (4) and fixed on the transfer frame (51). The transfer frame (51) is fixed on the injection molding workbench (4). The cleaning device (6) includes a cleaning drive (7) and a cutting component (8). The cutting component (8) is arranged near the top of the cleaning drive (7). The material dropping device (9) includes a guide trough (91) and a storage frame (92). The bottom of the guide trough (91) is fixed to the storage frame (92).
2. The automotive window switch housing production equipment according to claim 1, characterized in that, The injection molded part (2) includes an injection frame (21), a fixed module (22), and an injection molding machine (23). The fixed module (22) is mounted on the injection frame (21) and connected to the output end of the injection molding machine (23). The injection molding machine (23) is connected to a raw material tank (24). The injection mold (3) includes a protruding module (31), a template (32), a push plate (33), and a mold base (34). The protruding module (31), the template (32), and the push plate (33) are all mounted on the mold base (34) and slide relative to the mold base (34). The convex module (31) is fixed on the template (32) and passes through the push plate (33). The fixed module (22) has a cavity (221) corresponding to the injection mold (3). The push plate (33) is slidably disposed relative to the template (32). Multiple limiting slides (321) extend along the sliding direction on the outside of the template (32). Sliding columns (331) extend on the outside of the push plate (33) corresponding to the limiting slides (321). The sliding columns (331) are slidably disposed in the limiting slides (321).
3. The automotive window switch housing production equipment according to claim 1, characterized in that, The transfer fixture (53) is positioned above the injection molded part (2) and the injection mold (3). The transfer fixture (53) includes a transfer gripper (531), a transfer lifting block (532), and a sliding drive block (533). The transfer lifting block (532) is positioned at the bottom of the sliding drive block (533) and drives the transfer gripper (531) to move up and down. The transfer gripper (531) is U-shaped with its opening facing downwards and has a wear-resistant pad (5311) on its inner side.
4. The automotive window switch housing production equipment according to claim 3, characterized in that, The transfer track (52) has a cleaning drive component (7) at one end away from the injection molding worktable (4). The cleaning drive component (7) includes a cleaning frame (71), a rotating disk (72), multiple receiving grooves (73), and a rotation drive component (74). The rotating disk (72) is rotatably mounted on the cleaning frame (71). The rotating disk (72) is circular and its axis is set along the length of the injection molding worktable (4). The receiving grooves (73) are fixed on the rotating disk (72). The rotation drive component (74) 74) Control the rotation of the rotating disk (72). The rotation drive component (74) includes a drive gear ring (741), a rotating gear (742), and a main drive motor (743). The drive gear ring (741) is coaxially arranged with the rotating disk (72) and fixed on the rear end face of the rotating disk (72). The rotating gear (742) meshes with the drive gear ring (741) and is arranged on one side of the bottom of the drive gear ring (741). The main drive motor (743) controls the rotation of the rotating gear (742).
5. The automotive window switch housing production equipment according to claim 4, characterized in that, The receiving groove (73) is L-shaped and arranged in a circular array on the rotating disk (72). The opening of the receiving groove (73) is located away from the center of the rotating disk (72). A clearance groove (731) corresponding to the transfer gripper (531) is provided on the side of the receiving groove (73). A limiting strip (732) extends from one corner of the bottom edge of the receiving groove (73) away from the rotating disk (72). The limiting strip (732) is arranged perpendicular to the bottom edge of the receiving groove (73). The height of the limiting strip (732) does not exceed one-third of the height of the window switch housing.
6. The automotive window switch housing production equipment according to claim 5, characterized in that, The rotating disk (72) is also provided with an operating hole (721) arranged in a circumferential array. Each operating hole (721) is provided with a receiving groove (73). When the rotating disk (72) drives the operating hole (721) and the receiving groove (73) to rotate to the top, they cooperate with the cutting component (8). The cutting component (8) includes a cutting frame (81), a cutting clamp (82), and a cutting blade (83). The cutting clamp (82) and the cutting blade (83) are both fixed on the cutting frame (81). The cutting clamp (82) is slidably disposed in the operating hole (721) at the top along the axial direction of the rotating disk (72). The cutting blade (83) is vertically slidably disposed near the top of the rotating disk (72). A waste trough (711) is also provided in the middle of the rotating disk (72). The waste trough (711) is installed on the cleaning frame (71).
7. The automotive window switch housing production equipment according to claim 6, characterized in that, The rotating disk (72) is also provided with a plurality of inclined material guide plates (722). The material guide plates (722) are arranged in a circumferential array along the rotating disk (72) and correspond to the number of receiving grooves (73). The material guide plates (722) near the material dropping device (9) are inclined and the distance between the top and the center of the rotating disk (72) is less than the distance between the bottom and the center of the rotating disk (72).
8. The automotive window switch housing production equipment according to claim 7, characterized in that, The distance between the material guide plate (722) near the material dropping device (9) and the material guide trough (91) is less than the width of the window switch housing. The material guide trough (91) is inclined and the distance between the top and the material guide plate (722) is less than the distance between the bottom and the material guide plate (722). The bottom of the material guide trough (91) is fixed to the storage frame (92). A baffle plate (911) extends vertically from the side of the material guide trough (91) away from the rotating disk (72).