A rocker switch button assembly automatic assembling machine
Patent Information
- Application Number
- CN202522204439.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-19
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-19
AI Technical Summary
其中人工组装方式存在工作效率低、产品一致性差的问题,而且人工成本较高;而现有的自动组装方式存在组装机构复杂的问题,不仅设备成本高,且容易出现组装卡滞的情形
本技术方案跷板开关按钮组件自动组装机实现了从按钮的弹簧、弹子上料点胶以及按钮与底座压合的全流程自动化和连续作业,消除了人工操作中的间隔,机器自动上料、点胶和压合,避免了人工操作因力度、角度、胶量不一致导致的产品质量波动,在弹簧和弹子的安装过程中的两次点胶工艺设计,确保了弹簧和弹子被可靠地固定,防止其在后续使用中松动或脱落,提升了产品的可靠性和寿命。
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Figure CN224745610U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rocker switch assembly technology, specifically to an automatic assembly machine for rocker switch button assemblies. Background Technology
[0002] A rocker switch is an electrical switch that uses a button to move a contact piece to switch on and off. Its core principle is that a spring and a pin are filled inside the rocker button. The spring always applies a force to the pin, causing the pin to act on different positions of the moving contact piece and drive the moving contact piece to swing.
[0003] Existing rocker switch button assembly methods include manual assembly and automatic assembly. Manual assembly suffers from low work efficiency, poor product consistency, and high labor costs; while existing automatic assembly methods have complex assembly mechanisms, resulting in high equipment costs and a tendency for assembly to stall.
[0004] In view of this, there is an urgent need to design an automatic assembly machine for rocker switch button assemblies to solve the defects of existing rocker switch button assembly installation. Utility Model Content
[0005] To solve the above problems, this utility model provides an automatic assembly machine for rocker switch button assemblies, including a machine frame with a button feeding track and a base feeding track on the machine frame. It also includes a button assembly channel, a button pressing channel, a button transmission mechanism, and a base transmission mechanism. The button feeding track is connected to the button assembly channel, and the base feeding track is connected to the button pressing channel. The button transmission mechanism moves the buttons on the button assembly channel sequentially through a spring feeding mechanism, a primary dispensing mechanism, a ball feeding mechanism, and a secondary dispensing mechanism. The base transmission mechanism moves the bases on the button pressing channel sequentially through a base posture detection mechanism, a base posture adjustment mechanism, and a button pressing mechanism. The button pressing mechanism is located at the outlet end of the button assembly channel.
[0006] In one possible implementation, a spring guide seat is connected to the button assembly channel. The spring feeding mechanism includes a spring material moving frame and a spring feeding frame. The spring material moving frame is provided with a spring transfer power source and a spring transfer seat driven by the spring transfer power source. The spring feeding frame is provided with a spring feeding power source, a spring feeding seat driven by the spring feeding power source, a spring feeding pipe connected to the spring feeding seat, a spring screening component connected to the spring feeding seat and controlling the opening and closing of the spring feeding pipe, a spring screening power source linked with the spring screening component, a spring pressing power source located next to the spring feeding power source, and a spring pressing component driven by the spring pressing power source. The spring guide seat and the spring transfer seat are respectively provided with a first spring inlet hole and a second spring inlet hole. The spring pressing component faces the first spring inlet hole, and the second spring inlet hole faces the spring pressing component and the spring feeding pipe respectively as the spring transfer power source reciprocates.
[0007] In one possible implementation, the spring feed seat has a spring feed slot, the spring screening component includes a spring screening action part, a spring screening main body part, and a spring screening blocking part, the spring screening main body part is hinged in the spring feed slot, a spring screening reset part is provided between the spring screening action part and the spring feed slot, a spring blocking port is provided on the spring feed pipe, the spring screening blocking part is connected in the spring blocking port, and the spring screening action part protrudes from the spring feed slot and faces the spring screening power source.
[0008] In one possible implementation, a ball guide seat is connected to the button assembly channel. The ball feeding mechanism includes a ball material moving frame and a ball feeding frame. The ball material moving frame is equipped with a ball conveying power source and a ball conveying seat driven by the ball conveying power source. The ball feeding frame is equipped with a ball feeding power source, a ball feeding seat driven by the ball feeding power source, a ball feeding pipe connected to the ball feeding seat, and a ball feeding pipe connected to the ball feeding seat and controlling the ball feeding. The device includes a ball-type screening component that controls the flow of the material pipeline, a ball-type screening power source that is linked to the ball-type screening component, a ball-type pressing power source located next to the ball-type feeding power source, and a ball-type pressing component driven by the ball-type pressing power source. The ball-type guide seat and the ball-type transfer seat are respectively provided with a first ball-type inlet hole and a second ball-type inlet hole. The ball-type pressing component is directly opposite the first ball-type inlet hole, and the second ball-type inlet hole is directly opposite the ball-type pressing component and the ball-type feeding pipeline respectively as the ball-type transfer power source reciprocates.
[0009] In one possible implementation, the ball feed seat has a ball feed slot, the ball screening component includes a ball screening function part, a ball screening main body part, and a ball screening blocking part, the ball screening main body part is hinged in the ball feed slot, a ball screening reset part is provided between the ball screening function part and the ball feed slot, a ball blocking port is provided on the ball feed pipe, the ball screening blocking part is connected in the ball blocking port, and the ball screening function part protrudes from the ball feed slot and faces the ball screening power source.
[0010] In one possible implementation, both the primary dispensing mechanism and the secondary dispensing mechanism include a dispensing frame, a dispensing lifting power source connected to the dispensing frame, a dispensing transfer plate driven by the dispensing lifting power source, and a dispensing valve connected to the dispensing transfer plate.
[0011] In one possible implementation, the base posture adjustment mechanism includes a base posture adjustment power source and a base posture adjustment seat driven by the base posture adjustment power source, the base posture adjustment seat being rotatably connected to the button press-fit material channel.
[0012] In one possible implementation, the button pressing mechanism includes a button pressing power source and a button pressing seat driven by the button pressing power source. The button pressing seat is connected to the button assembly channel, and a button pressing positioning block is provided in the button pressing channel opposite to the button pressing seat.
[0013] In one possible implementation, the button transmission mechanism includes a button lateral movement force source, a button lateral movement plate driven by the button lateral movement force source, a button longitudinal movement force source connected to the button lateral movement plate, a button longitudinal movement plate driven by the button longitudinal movement force source, and a button clamping plate connected to the button longitudinal movement plate. The button clamping plate is located on one side of the button assembly channel, and the end of the button clamping plate near the button assembly channel is provided with a button clamping slot.
[0014] In one possible implementation, the base transmission mechanism includes a base transmission power source, a base pressing and shifting plate driven by the base transmission power source, and a base actuating member connected to the base pressing and shifting plate. The base actuating member includes an actuating base fixed to the base pressing and shifting plate and an actuating piece hinged to the actuating base. The actuating piece includes a release end face and a locking end face that are linked with the base.
[0015] The working principle of this utility model automatic assembly machine for rocker switch button assemblies is as follows: The button and the base are fed from the button feeding track and the base feeding track, respectively. The button transmission mechanism moves the button on the button assembly channel through the spring feeding mechanism, the primary dispensing mechanism, the ball feeding mechanism, and the secondary dispensing mechanism in sequence. The spring feeding mechanism guides the spring into the button. The primary dispensing mechanism applies glue to the spring on the button. The ball feeding mechanism guides the ball into the button and connects it to the spring. The secondary dispensing mechanism applies glue to the spring on the button in the second place. After the secondary dispensing is completed, the button enters the station of the button pressing mechanism. The base transmission mechanism moves the base on the button pressing channel through the base posture detection mechanism, the base posture adjustment mechanism, and the button pressing mechanism in sequence. The base posture detection mechanism detects the current placement direction of the base to determine whether adjustment is needed. The base posture adjustment mechanism adjusts the direction of the base that needs adjustment. The base with the correct placement direction enters the station of the button pressing mechanism. The button pressing mechanism presses the button and the base together to complete the assembly of the button assembly on the rocker switch.
[0016] Compared with the prior art, the technical solution provided by this utility model has the following advantages: This technical solution, an automatic assembly machine for rocker switch button assemblies, achieves fully automated and continuous operation from the feeding and gluing of the button's spring and pins to the pressing of the button with the base. It eliminates the intervals in manual operation. The machine automatically feeds, glides, and presses, avoiding product quality fluctuations caused by inconsistent force, angle, and glue amount during manual operation. The two-stage gluing process during the installation of the spring and pins ensures that the spring and pins are reliably fixed, preventing them from loosening or falling off during subsequent use, thus improving product reliability and lifespan. Attached Figure Description
[0017] Figure 1 This is a perspective view of an automatic assembly machine for a rocker switch button assembly according to an embodiment of this utility model.
[0018] Figure 2 This is a perspective view of the spring feeding mechanism according to an embodiment of the present utility model.
[0019] Figure 3 This is a partial cross-sectional view of the spring feeding mechanism according to an embodiment of the present utility model.
[0020] Figure 4 This is a perspective view of the ball feeding mechanism according to an embodiment of the present utility model.
[0021] Figure 5 This is a partial cross-sectional view of the ball feeding mechanism according to an embodiment of the present utility model.
[0022] Figure 6 This is a schematic diagram of the various mechanisms on the button assembly channel in an embodiment of this utility model.
[0023] Figure 7 This is a perspective view of the base posture detection and adjustment mechanism in an embodiment of this utility model.
[0024] Figure 8 This is a perspective view of the dispensing mechanism in an embodiment of the present utility model.
[0025] Figure 9 This is a perspective view of the base transmission mechanism and button pressing mechanism in an embodiment of this utility model.
[0026] Figure 10 This is a cross-sectional view of the base actuating component in an embodiment of this utility model. Detailed Implementation
[0027] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. The accompanying drawings are for illustrative purposes only, representing schematic diagrams only, not actual object drawings, and should not be construed as limiting this patent. To better illustrate the embodiments of this utility model, some components in the drawings may be omitted, enlarged, or reduced, and do not represent the actual product dimensions. It is understandable to those skilled in the art that some well-known structures and their descriptions may be omitted in the drawings.
[0028] Combined with appendix Figure 1 To be continued Figure 10 This utility model provides an automatic assembly machine for rocker switch button assemblies, comprising a machine frame 1, on which a button feeding track 11 and a base feeding track 12 are provided. It also includes a button assembly channel 13, a button pressing channel 14, a button transmission mechanism 2, and a base transmission mechanism 3. The button feeding track 11 is connected to the button assembly channel 13, and the base feeding track 12 is connected to the button pressing channel 14. The button transmission mechanism 2 transfers the buttons on the button assembly channel 13 sequentially through a spring feeding mechanism 4, a primary dispensing mechanism 5, a ball feeding mechanism 6, and a secondary dispensing mechanism 7. The base transmission mechanism 3 transfers the bases on the button pressing channel 14 sequentially through a base posture detection mechanism 8, a base posture adjustment mechanism 9, and a button pressing mechanism 10. The button pressing mechanism 10 is located at the outlet end of the button assembly channel 13.
[0029] In this embodiment, the button feeding track 11 and the base feeding track 12 are tracks connecting the button vibratory feeder and the base vibratory feeder. In this embodiment, the button vibratory feeder and the base vibratory feeder are not shown, but this does not affect the automated assembly of the rocker switch button assembly.
[0030] The working principle of this utility model automatic assembly machine for rocker switch button assemblies is as follows: the button and the base are fed from the button feeding track 11 and the base feeding track 12 respectively. The button transmission mechanism 2 moves the button on the button assembly channel 13 through the spring feeding mechanism 4, the primary dispensing mechanism 5, the ball feeding mechanism 6, and the secondary dispensing mechanism 7 in sequence. The spring feeding mechanism 4 guides the spring into the button. The primary dispensing mechanism 5 performs primary dispensing on the spring on the button. The ball feeding mechanism 6 guides the ball into the button and connects it to the spring. The secondary dispensing mechanism 7 performs secondary dispensing on the spring on the button. After the glue is applied for the second time, the button enters the station of the button pressing mechanism 10. The base transmission mechanism 3 moves the base on the button pressing channel 14 through the base posture detection mechanism 8, the base posture adjustment mechanism 9 and the button pressing mechanism 10 in sequence. The base posture detection mechanism 8 detects the current placement direction of the base to determine whether it needs to be adjusted. The base posture adjustment mechanism 9 adjusts the direction of the base that needs to be adjusted. The base with the correct placement direction enters the station of the button pressing mechanism 10. The button pressing mechanism 10 presses the button and the base together to complete the assembly of the button assembly on the rocker switch.
[0031] In this embodiment, the spring feeding mechanism 4 and the ball feeding mechanism 6 are mechanisms for adding springs and balls to the button, respectively. The size and structure of the spring and the ball are not much different, so the spring feeding mechanism 4 and the ball feeding mechanism 6 have the same structure.
[0032] In this embodiment, the primary dispensing mechanism 5 dispenses adhesive after the spring is inserted into the button, in order to increase the adhesion between the subsequent ball and the spring; the secondary dispensing mechanism 7 dispenses adhesive after the ball is inserted into the button, in order to improve the reliability and smoothness of the linkage between the ball and the moving contact piece on the base, and to avoid the rocker switch from jamming due to excessive contact friction between the ball and the moving contact piece on the base.
[0033] In this embodiment, as shown in the appendix Figure 2As shown, a spring guide seat 41 is connected to the button assembly material channel 13. The spring feeding mechanism 4 includes a spring material moving frame 42 and a spring feeding frame 43. The spring material moving frame 42 is provided with a spring transfer power source 44 and a spring transfer seat 45 driven by the spring transfer power source 44. The spring feeding frame 43 is provided with a spring feeding power source 46, a spring feeding seat 47 driven by the spring feeding power source 46, a spring feeding pipe 48 connected to the spring feeding seat 47, and a spring screen connected to the spring feeding seat 47 and controlling the opening and closing of the spring feeding pipe 48. The spring screener 49 is linked to the spring screener 49, the spring pressing power source 410 is located next to the spring feeding power source 46, and the spring pressing member 412 is driven by the spring pressing power source 411. The spring guide seat 41 and the spring transfer seat 45 are respectively provided with a first spring inlet hole 413 and a second spring inlet hole 414. The spring pressing member 412 is directly opposite to the first spring inlet hole 413, and the second spring inlet hole 414 is directly opposite to the spring pressing member 412 and the spring feeding pipe 48 respectively as the spring transfer power source 44 reciprocates.
[0034] In this embodiment, as shown in the appendix Figure 3 As shown, the spring feed seat 47 has a spring feed slot 471. The spring screening component 49 includes a spring screening action part 491, a spring screening main body part 492, and a spring screening blocking part 493. The spring screening main body part 492 is hinged in the spring feed slot 471. A spring screening reset part 494 is provided between the spring screening action part 491 and the spring feed slot 471. A spring blocking port 481 is provided on the spring feed pipe 48. The spring screening blocking part 493 is connected in the spring blocking port 481. The spring screening action part 491 protrudes from the spring feed slot 471 and faces the spring screening power source 410.
[0035] In this embodiment, the operating principle of the spring feeding mechanism 4 is as follows: the spring feeding power source 46 drives the spring feeding pipe 48 to move downward, so that the spring feeding pipe 48 is aligned with the second spring inlet hole 414. The spring screening power source 410 triggers the spring screening action part 491. The spring screening member 49 swings, causing the spring screening blocking part 493 to leave the spring blocking port 481. The spring in the spring feeding pipe 48 falls into the second spring inlet hole 414. The spring screening power source 410 performs a reset action. The spring screening blocking part 493 is reset under the action of the spring screening reset member 494. The spring transfer power source 44 drives the spring transfer seat 45 to perform a translational action, so that the second spring inlet hole 414 is aligned with the first spring inlet hole 413. The spring pressing power source 411 drives the spring pressing member 412 to move downward, pushing the spring in the second spring inlet hole 414 along the first spring inlet hole 413 onto the button.
[0036] In this embodiment, as shown in the appendix Figure 4 As shown, a ball guide seat 61 is connected to the button assembly material channel 13. The ball feeding mechanism 6 includes a ball material moving frame 62 and a ball feeding frame 63. The ball material moving frame 62 is provided with a ball conveying power source 64 and a ball conveying seat 65 driven by the ball conveying power source 64. The ball feeding frame 63 is provided with a ball feeding power source 66, a ball feeding seat 67 driven by the ball feeding power source 66, a ball feeding pipe 68 connected to the ball feeding seat 67, and a ball separator connected to the ball feeding seat 67 and controlling the opening and closing of the ball feeding pipe 68. The components include: component 69; ball screening power source 610 linked with the ball screening component 69; ball pressing power source 611 located beside the ball feeding power source 66; and ball pressing component 612 driven by the ball pressing power source 611. The ball guide seat 61 and the ball transfer seat 65 are respectively provided with a first ball inlet hole 613 and a second ball inlet hole 614. The ball pressing component 612 is directly opposite the first ball inlet hole 613. The second ball inlet hole 614 is directly opposite the ball pressing component 612 and the ball feeding pipe 68 respectively as the ball transfer power source 64 reciprocates.
[0037] In this embodiment, as shown in the appendix Figure 5As shown, the ball feed seat 67 has a ball feed slot 671. The ball screening component 69 includes a ball screening function part 691, a ball screening main body part 692, and a ball screening blocking part 693. The ball screening main body part 692 is hinged in the ball feed slot 671. A ball screening reset part 694 is provided between the ball screening function part 691 and the ball feed slot 671. A ball blocking port 681 is provided on the ball feed pipe 68. The ball screening blocking part 693 is connected in the ball blocking port 681. The ball screening function part 691 protrudes from the ball feed slot 671 and faces the ball screening power source 610.
[0038] In this embodiment, the working principle of the ball feed is the same as that of the spring feed, and will not be described again.
[0039] In this embodiment, as shown in the appendix Figure 8 As shown, both the primary dispensing mechanism 5 and the secondary dispensing mechanism 6 include a dispensing frame 51, a dispensing lifting power source 52 connected to the dispensing frame 51, a dispensing transfer plate 53 driven by the dispensing lifting power source 52, and a dispensing valve 54 connected to the dispensing transfer plate 53. The dispensing valve 54 is configured with a different number of dispensing ports according to the number of springs / tumblers on the button.
[0040] In this embodiment, as shown in the appendix Figure 7 As shown, the base posture adjustment mechanism 9 includes a base posture adjustment power source 91 and a base posture adjustment seat 92 driven by the base posture adjustment power source 91. The base posture adjustment seat 92 is rotatably connected to the button pressing material channel 14.
[0041] In this embodiment, as shown in the appendix Figure 9 As shown, the button pressing mechanism 10 includes a button pressing power source 101 and a button pressing seat 102 driven by the button pressing power source 101. The button pressing seat 102 is connected to the button assembly channel 13. The button pressing channel 14 is provided with a button pressing positioning block 103 opposite to the button pressing seat 102. When the button pressing power source 101 is activated, it lifts the button on the button pressing seat 102, so that the button is connected to the base located on the button pressing channel 14. The button pressing positioning block 103 is used for button pressing limit.
[0042] In this embodiment, as shown in the appendix Figure 6As shown, the button transmission mechanism 2 includes a button lateral movement force source 21, a button lateral movement plate 22 driven by the button lateral movement force source 21, a button longitudinal movement force source 23 connected to the button lateral movement plate 22, a button longitudinal movement plate 24 driven by the button longitudinal movement force source 23, and a button clamping plate 25 connected to the button longitudinal movement plate 24. The button clamping plate 25 is located on one side of the button assembly channel 13, and a button clamping slot 251 is provided at one end of the button clamping plate 25 near the button assembly channel 13.
[0043] In this embodiment, the button clamping plate 25 is moved by the button horizontal movement force source 21 and the button vertical movement force source 23, thereby moving the buttons on the button assembly channel 13 one by one. The button clamping slot 251 is adapted to the button size.
[0044] In this embodiment, as shown in the appendix Figure 9 and attached Figure 10 As shown, the base transmission mechanism 3 includes a base transmission power source 31, a base pressing and shifting plate 32 driven by the base transmission power source 31, and a base actuating member 33 connected to the base pressing and shifting plate 32. The base actuating member 33 includes a shifting base 4 fixed on the base pressing and shifting plate 32 and a shifting piece 35 hinged on the shifting base 34. The shifting piece 35 includes a release end face 351 and a locking end face 352 that are linked with the base.
[0045] In this embodiment, as shown in the appendix Figure 10 As shown, the base transmission power source 31 drives the base actuating member 33 to reciprocate. When the release end face 351 of the actuating piece 35 acts on the base, the actuating piece 35 retracts inward and does not drive the base to move backward. When the locking end face 352 of the actuating piece 35 acts on the base, the actuating piece 35 cannot retract inward and drives the base to move forward.
[0046] The automatic assembly machine for rocker switch button assemblies in this embodiment achieves full automation and continuous operation from the feeding and gluing of the button's spring and pins to the pressing of the button with the base. It eliminates the intervals in manual operation. The machine automatically feeds, glues, and presses, avoiding product quality fluctuations caused by inconsistent force, angle, and glue amount during manual operation. The two-stage gluing process during the installation of the spring and pins ensures that the spring and pins are reliably fixed, preventing them from loosening or falling off during subsequent use, thus improving the reliability and lifespan of the product.
[0047] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model, or direct / indirect applications in other related technical fields, should be included within the scope of protection of the claims of this utility model.
Claims
1. A rocker switch button assembly automatic assembly machine, comprising a device rack, a button feeding track and a base feeding track are arranged on the device rack, characterized in that, It also includes a button assembly channel, a button pressing channel, a button transmission mechanism, and a base transmission mechanism. The button feeding track is connected to the button assembly channel, and the base feeding track is connected to the button pressing channel. The button transmission mechanism moves the buttons on the button assembly channel through a spring feeding mechanism, a primary dispensing mechanism, a ball feeding mechanism, and a secondary dispensing mechanism in sequence. The base transmission mechanism moves the bases on the button pressing channel through a base posture detection mechanism, a base posture adjustment mechanism, and a button pressing mechanism in sequence. The button pressing mechanism is located at the outlet end of the button assembly channel.
2. The automatic assembly machine for a rocker switch button assembly according to claim 1, characterized in that, A spring guide seat is connected to the button assembly channel. The spring feeding mechanism includes a spring material moving frame and a spring feeding frame. The spring material moving frame is provided with a spring transfer power source and a spring transfer seat driven by the spring transfer power source. The spring feeding frame is provided with a spring feeding power source, a spring feeding seat driven by the spring feeding power source, a spring feeding pipe connected to the spring feeding seat, a spring screening component connected to the spring feeding seat and controlling the opening and closing of the spring feeding pipe, a spring screening power source linked with the spring screening component, a spring pressing power source located next to the spring feeding power source, and a spring pressing component driven by the spring pressing power source. The spring guide seat and the spring transfer seat are respectively provided with a first spring inlet hole and a second spring inlet hole. The spring pressing component is directly opposite the first spring inlet hole, and the second spring inlet hole is directly opposite the spring pressing component and the spring feeding pipe respectively as the spring transfer power source reciprocates.
3. The automatic assembly machine for a rocker switch button assembly according to claim 2, characterized in that, The spring feed seat has a spring feed slot. The spring screening component includes a spring screening action part, a spring screening main body part, and a spring screening blocking part. The spring screening main body part is hinged in the spring feed slot. A spring screening reset part is provided between the spring screening action part and the spring feed slot. A spring blocking port is provided on the spring feed pipe. The spring screening blocking part is connected in the spring blocking port. The spring screening action part protrudes from the spring feed slot and faces the spring screening power source.
4. The automatic assembly machine for a rocker switch button assembly according to claim 1, characterized in that, The button assembly channel is connected to a ball guide seat. The ball feeding mechanism includes a ball material moving frame and a ball feeding frame. The ball material moving frame is equipped with a ball conveying power source and a ball conveying seat driven by the ball conveying power source. The ball feeding frame is equipped with a ball feeding power source, a ball feeding seat driven by the ball feeding power source, a ball feeding pipe connected to the ball feeding seat, and a ball feeding pipe connected to the ball feeding seat and controlling the opening and closing of the ball feeding pipe. The system includes a ball-sieving component, a ball-sieving power source linked to the ball-sieving component, a ball-pressing power source located next to the ball-feeding power source, and a ball-pressing component driven by the ball-pressing power source. The ball guide seat and the ball transfer seat are respectively provided with a first ball inlet hole and a second ball inlet hole. The ball-pressing component faces the first ball inlet hole, and the second ball inlet hole faces the ball-pressing component and the ball-feeding pipe respectively as the ball transfer power source reciprocates.
5. The automatic assembly machine for a rocker switch button assembly according to claim 4, characterized in that, The ball feed seat has a ball feed slot. The ball screening component includes a ball screening function part, a ball screening main body part, and a ball screening blocking part. The ball screening main body part is hinged in the ball feed slot. A ball screening reset part is provided between the ball screening function part and the ball feed slot. A ball blocking port is provided on the ball feed pipe. The ball screening blocking part is connected in the ball blocking port. The ball screening function part protrudes from the ball feed slot and faces the ball screening power source.
6. The automatic assembly machine for a rocker switch button assembly according to claim 1, characterized in that, Both the primary dispensing mechanism and the secondary dispensing mechanism include a dispensing frame, a dispensing lifting power source connected to the dispensing frame, a dispensing transfer plate driven by the dispensing lifting power source, and a dispensing valve connected to the dispensing transfer plate.
7. The automatic assembly machine for a rocker switch button assembly according to claim 1, characterized in that, The base posture adjustment mechanism includes a base posture adjustment power source and a base posture adjustment seat driven by the base posture adjustment power source. The base posture adjustment seat is rotatably connected to the button pressing material channel.
8. The automatic assembly machine for a rocker switch button assembly according to claim 1, characterized in that, The button pressing mechanism includes a button pressing power source and a button pressing seat driven by the button pressing power source. The button pressing seat is connected to the button assembly material channel, and a button pressing positioning block is provided at the position of the button pressing material channel opposite to the button pressing seat.
9. An automatic assembly machine for a rocker switch button assembly according to any one of claims 1 to 8, characterized in that, The button transmission mechanism includes a button lateral movement force source, a button lateral movement plate driven by the button lateral movement force source, a button longitudinal movement force source connected to the button lateral movement plate, a button longitudinal movement plate driven by the button longitudinal movement force source, and a button clamping plate connected to the button longitudinal movement plate. The button clamping plate is located on one side of the button assembly channel, and the end of the button clamping plate near the button assembly channel is provided with a button clamping slot.
10. An automatic assembly machine for a rocker switch button assembly according to any one of claims 1 to 8, characterized in that, The base transmission mechanism includes a base transmission power source, a base pressing and shifting plate driven by the base transmission power source, and a base actuating component connected to the base pressing and shifting plate. The base actuating component includes an actuating base fixed to the base pressing and shifting plate and an actuating piece hinged to the actuating base. The actuating piece includes a release end face and a locking end face that are linked with the base.