Equipment for automatically producing switch button box

By designing automated production equipment and a transparent protective shell, the problems of low efficiency, poor consistency, and safety hazards in the production of switch button boxes have been solved, achieving efficient and safe automated production.

CN121374065APending Publication Date: 2026-01-23XIANNING VOCATIONAL TECHN COLLEGE
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Patent Information

Application Number
CN202511608150.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

In the existing technology, the production of switch button boxes relies on manual assembly or semi-automated equipment, which has problems such as low production efficiency, poor product consistency and safety hazards.

Method used

The automated production equipment utilizes components such as button-feed conveyor belts, button-feeding grippers, turntables, panel-feed conveyor mechanisms, and contact-feed conveyor belts to achieve an automated process chain from button to panel to contact to flip to base. Combined with a transparent protective shell and a vibrating feeding tray, it achieves separation of human and machine and safe production.

Benefits of technology

It significantly improves production efficiency and product consistency, reduces the risk of mechanical injury, and achieves efficient and safe automated production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses equipment for automatically producing switch button boxes. Comprising a button supply conveying belt, a button feeding clamping jaw, a rotary disc, a panel supply conveying mechanism, a panel feeding clamping jaw, a contact supply conveying belt, a contact feeding clamping jaw, a first screw locking mechanism, a discharging clamping jaw, a turnover mechanism, a base supply conveying mechanism, a base feeding clamping jaw and a second screw locking mechanism. A plurality of assembling discs are arranged at the top of the rotating disc, and the panel feeding clamping jaws convey panels into the assembling discs to be assembled with buttons; a first pneumatic screwdriver of the first screw locking mechanism is aligned with a screw locking position of the contact; the discharging clamping jaw is used for taking down the half cost part after the contact and the panel are connected; the discharging clamping jaw places the taken-down semi-finished product part on the turnover mechanism to be turned over; and a second pneumatic screwdriver of the second screw locking mechanism is aligned with a screw locking position where the base is connected with the panel. According to the equipment, the production efficiency can be improved, the product consistency is high, and the operation is safe.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of switch button box production, in particular to an automatic switch button box production equipment. BACKGROUND

[0002] In the prior art, switch button box production mainly relies on manual assembly or semi-automatic equipment assembly. The traditional manual assembly method has some significant defects: for example, manual operation is slow and difficult to meet the needs of large-scale production; manual assembly is easily affected by factors such as operator skill level and fatigue level, resulting in poor product consistency.

[0003] At the same time, the traditional equipment lacks a perfect safety protection mechanism, and there are safety hazards such as mechanical injury during operation, which threatens the personal safety of the operator.

[0004] Therefore, it is an urgent problem for those skilled in the art to develop an automatic switch button box production equipment with high production efficiency, high product consistency, and high operation safety. SUMMARY

[0005] Therefore, the present application provides an automatic switch button box production equipment with high production efficiency, high product consistency, and high operation safety.

[0006] In order to achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0007] An automatic switch button box production equipment, comprising:

[0008] A button supply conveyor belt for conveying buttons;

[0009] A button feeding clamp;

[0010] A turntable provided with a plurality of assembly discs on the top, the button feeding clamp moves the button from the button supply conveyor belt to the assembly disc after clamping the button;

[0011] A panel supply conveying mechanism for conveying panels;

[0012] A panel feeding clamp for conveying the panel to the assembly disc to assemble with the button;

[0013] A contact supply conveyor belt for conveying contacts;

[0014] A contact feeding clamp for moving the contact from the contact supply conveyor belt to the assembly disc to assemble with the panel;

[0015] A first screw locking mechanism, a first pneumatic screwdriver of the first screw locking mechanism is aligned with a screw locking position of the contact, and the contact is locked and connected with the panel;

[0016] A blanking gripper, which takes down the semi-finished part after the contact is connected with the panel;

[0017] A turnover mechanism, the blanking gripper puts the taken-down semi-finished part into the turnover mechanism for turnover;

[0018] A base feeding conveying mechanism, which conveys the base;

[0019] A base feeding gripper, which puts the base on the top of the semi-finished part after turnover and is buckled with the panel;

[0020] A second screw locking mechanism, a second pneumatic screwdriver of the second screw locking mechanism is aligned with a screw locking position of the base connected with the panel, and the base is locked and connected with the panel.

[0021] The beneficial effects of the above technical solution are that a complete automatic process chain of button→panel→contact→first locking→turnover→base→second locking is proposed, manual assembly is replaced by mechanical action, carousel type multi-station parallel operation is adopted, and the whole line capacity is significantly improved, and the whole process is completed in a closed space, and personnel only need to be responsible for feeding and discharging, and safety is high.

[0022] Preferably, the device further comprises a protective shell, and the protective shell is transparent. The transparent protective shell is added to the periphery of the device, which prevents the high-speed moving parts from hurting people and does not hinder the operator from observing the internal working condition in real time.

[0023] Preferably, the button feeding gripper, the panel feeding gripper, the contact feeding gripper, the blanking gripper and the base feeding gripper all comprise a horizontal air cylinder, a vertical air cylinder and a pneumatic gripper; the pneumatic gripper is connected with the telescopic end of the vertical air cylinder, and the telescopic end of the horizontal air cylinder is connected with the fixed end of the vertical air cylinder.

[0024] Preferably, the panel feeding conveying mechanism comprises a panel placing box, a panel moving belt, a panel moving plate, a panel moving motor, a panel moving cylinder and a panel waiting position; a plurality of the panel stacks are placed in the panel placing box, and the bottom of the panel placing box is provided with the panel moving plate, and the panel stacks are arranged on the top of the panel moving plate; the panel moving motor drives the panel moving belt to rotate, and the end of the panel moving plate extends out of the panel placing box and is connected with the panel moving belt; the panel waiting position is arranged on the top of the panel placing box; the panel moving cylinder is arranged on the top of the panel placing box; when the panel moving belt drives the panel moving plate to move up by the height of one panel, the panel moving cylinder pushes the panel to the panel waiting position.

[0025] Preferably, the first screw locking mechanism further comprises a first locking cylinder, and the first locking cylinder drives the first pneumatic screwdriver to move downward to lock the screw.

[0026] Preferably, the blanking clamp jaw is further provided with a contact detection plate, and the bottom of the contact detection plate is provided with a contact detection contact. The blanking clamp jaw integrates the detection function, and the electrical performance preliminary inspection is completed before the semi-finished product leaves the rotating disc station, thereby avoiding the defective products from flowing into the subsequent process and reducing the rework.

[0027] Preferably, the turnover mechanism comprises a turnover motor, a turnover plate and a vacuum suction cup; the output end of the turnover motor is connected with the turnover plate and drives the turnover plate to rotate, the semi-finished product component is placed on the turnover plate, and the top of the turnover plate is provided with a vacuum suction cup for adsorbing the panel; after the turnover plate is turned over, the panel is placed on the blanking plate.

[0028] Preferably, the base feeding conveying mechanism comprises a base placing box, a base moving belt, a base moving plate, a base moving motor and a base moving cylinder; a plurality of the base stacks are placed in the base placing box, and the bottom of the base placing box is provided with the base moving plate, and the base stacks are arranged on the top of the base moving plate; the base moving motor drives the base moving belt to rotate, and the end of the base moving plate extends out of the base placing box and is connected with the base moving belt; the base moving cylinder is arranged on the top of the base placing box; when the base moving belt drives the base moving plate to move up by the height of one base, the base moving cylinder pushes the base to move to the top of the blanking plate.

[0029] Preferably, the second screw locking mechanism further comprises a second locking cylinder, a horizontal slide rail and a vertical slide rail, the second locking cylinder drives the second pneumatic screwdriver to move downward to lock the screw; the horizontal slide rail and the vertical slide rail are slidingly connected, and the second locking cylinder and the horizontal slide rail are slidingly connected.

[0030] Preferably, the feeding end of the button supply conveying belt is provided with a vibrating feeding disc; and a vibrating discharging disc is arranged near the discharging plate. The vibrating feeding disc and the vibrating discharging disc are arranged outside the protective shell, so that manual feeding and discharging can be performed without opening the protective door, thereby maintaining the internal cleanliness and avoiding the contact between the personnel and the moving parts, and the degree of separation between the personnel and the machine is higher.

[0031] According to the technical scheme, compared with the prior art, the application provides an equipment for automatically producing a switch button box, which has the following beneficial effects:

[0032] (1) The rotating disc multi-station parallel operation can significantly improve the production capacity of the whole line;

[0033] (2) The transparent protective shell + external vibrating disc + internal full automation can realize the separation between the personnel and the machine, and eliminate the mechanical injury hazards;

[0034] (3) The rotating disc assembly disc can be replaced, and the production of button boxes of multiple specifications is compatible, and the replacement cost is low. BRIEF DESCRIPTION OF DRAWINGS

[0035] In order to more clearly illustrate the technical scheme in the embodiments of the application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only embodiments of the application, and other drawings can be obtained by the drawings provided by the person skilled in the art without creative labor.

[0036] Figure 1 The external structure diagram of the equipment provided by the application is shown in the figure;

[0037] Figure 2 The internal structure diagram of the equipment provided by the application is shown in the figure;

[0038] Figure 3 The structure of the button supply conveying belt provided by the application is shown in the figure; Figure 2 The structure of the button supply conveying belt provided by the application is shown in the figure;

[0039] Figure 4 The structure of the button supply conveying belt provided by the application is shown in the figure; Figure 2 The structure of the button supply conveying belt provided by the application is shown in the figure;

[0040] Figure 5 The structure of the button supply conveying belt provided by the application is shown in the figure;

[0041] Figure 6 The structure of the button supply conveying belt provided by the application is shown in the figure;

[0042] Figure 7 The structure of the button supply conveying belt provided by the application is shown in the figure;

[0043] Figure 8 A structure of the semi-finished part mounting process provided by the present application is shown in the following figure: Figure 7

[0044] Figure 9 Another angle of the structure of the semi-finished part mounting process provided by the present application is shown in the following figure:

[0045] Figure 10 A structure of the semi-finished part mounting process provided by the present application is shown in the following figure: Figure 9

[0046] Figure 11 A structure of the semi-finished part mounting process provided by the present application is shown in the following figure: Figure 9

[0047] Figure 12 A structure of the semi-finished part mounting process provided by the present application is shown in the following figure.

[0048] In the figure,

[0049] 1-button feeding conveyor; 2-button feeding clamp;

[0050] 3-rotary disc;

[0051] 31-assembly disc;

[0052] 4-panel feeding conveyor;

[0053] 41-panel placing box; 42-panel moving belt; 43-panel moving plate; 44-panel moving motor; 45-panel moving cylinder; 46-panel waiting position;

[0054] 5-panel feeding clamp; 6-contact feeding conveyor; 7-contact feeding clamp;

[0055] 8-first screw locking mechanism;

[0056] 81-first pneumatic screwdriver; 82-first locking cylinder;

[0057] 9-discharging clamp;

[0058] 91-contact detection plate; 92-contact detection contact;

[0059] 10-turnover mechanism;

[0060] 101-turnover plate;

[0061] 11-base feeding conveyor;

[0062] 111-base placing box; 112-base moving belt; 113-base moving plate; 114-base moving motor; 115-base moving cylinder;​​​

[0063] 12-base loading clamp jaw;

[0064] 13-second screw locking mechanism;

[0065] 131-second pneumatic screwdriver;132-second locking cylinder;133-horizontal slide rail;134-vertical slide rail;

[0066] 14-protection shell;15-horizontal cylinder;16-vertical cylinder;17-pneumatic clamp jaw;18-discharging plate;19-vibrating feeding disc;20-vibrating discharging disc. DETAILED DESCRIPTION

[0067] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0068] The embodiments of the present application disclose an equipment for automatically producing switch button boxes, comprising:

[0069] A button feeding conveyor 1 is configured to convey buttons.

[0070] A button loading clamp jaw 2 is configured to clamp the buttons.

[0071] A turntable 3 is provided with a plurality of assembling discs 31 on the top of the turntable 3, and the button loading clamp jaw 2 moves the clamped buttons from the button feeding conveyor 1 to the assembling discs 31.

[0072] A panel feeding conveying mechanism 4 is configured to convey panels.

[0073] A panel loading clamp jaw 5 is configured to convey the panels to the assembling discs 31 to assemble with the buttons.

[0074] A contact feeding conveyor 6 is configured to convey contacts.

[0075] A contact loading clamp jaw 7 is configured to move the contacts from the contact feeding conveyor 6 to the assembling discs 31 to assemble with the panels.

[0076] A first screw locking mechanism 8 is configured to lock and connect the contacts and the panels by the first pneumatic screwdriver 81 of the first screw locking mechanism 8 aligning with the screw locking position of the contacts.

[0077] A discharging clamp jaw 9 is configured to take down the semi-finished parts of the contacts and the panels.

[0078] The turnover mechanism 10, the blanking clamp jaw 9 puts the removed semi-finished part to the turnover mechanism 10 for turnover;

[0079] The base feeding conveying mechanism 11, the base feeding conveying mechanism 11 conveys the base;

[0080] The base feeding clamp jaw 12, the base feeding clamp jaw 12 puts the base on the top of the semi-finished part after turnover, and is buckled with the panel;

[0081] The second screw locking mechanism 13, the second pneumatic screwdriver 131 of the second screw locking mechanism 13 is aligned with the screw locking position of the base and the panel, and the base and the panel are locked and connected.

[0082] In order to further optimize the above technical scheme, the button feeding clamp jaw 2, the panel feeding clamp jaw 5, the contact feeding clamp jaw 7 and the blanking clamp jaw 9 are respectively for different positions of the turntable 3, and the assembly operation at different positions is realized by rotating the turntable 3.

[0083] In order to further optimize the above technical scheme, the assembly disc 31 at the top of the turntable 3 is replaceable, and when installing buttons of different sizes, the assembly disc 31 of the corresponding size can be replaced, which is convenient for installing buttons of different models.

[0084] In order to further optimize the above technical scheme, the device further comprises a protective shell 14, and the protective shell 14 is transparent. The protective shell can play a protective role to prevent the device from causing harm to the operator during movement, and can also facilitate observation of the internal situation of the device; At the same time, the structure in the protective shell 14 plays a fixed support role. The surface of the protective shell 14 is provided with a protective door, which is convenient for maintenance of the internal equipment through the protective door.

[0085] In order to further optimize the above technical scheme, the button feeding clamp jaw 2, the panel feeding clamp jaw 5, the contact feeding clamp jaw 7, the blanking clamp jaw 9 and the base feeding clamp jaw 12 all comprise a horizontal air cylinder 15, a vertical air cylinder 16 and a pneumatic clamp jaw 17; The pneumatic clamp jaw 17 is connected with the telescopic end of the vertical air cylinder 16, and the telescopic end of the horizontal air cylinder 15 is connected with the fixed end of the vertical air cylinder 16. The horizontal air cylinder 15 and the vertical air cylinder 16 drive the pneumatic clamp jaw to move, and move the clamped parts to the corresponding position, and the pneumatic clamp jaw 17 moves the two clamp jaws to realize clamping and loosening of the parts.

[0086] In order to further optimize the above technical scheme, the panel supply conveying mechanism 4 comprises a panel placing box 41, a panel moving belt 42, a panel moving plate 43, a panel moving motor 44, a panel moving cylinder 45 and a panel waiting position 46; a plurality of panels are stacked in the panel placing box 41, and the bottom of the panel placing box 41 is provided with the panel moving plate 43, and the stacked panels are all arranged on the top of the panel moving plate 43; the panel moving motor 44 drives the panel moving belt 42 to rotate, and the end of the panel moving plate 43 extends out of the panel placing box 41 and is connected with the panel moving belt 42; the panel waiting position 46 is arranged on the top of the panel placing box 41; the panel moving cylinder 45 is located on the top of the panel placing box 41; after the panel moving belt 42 drives the panel moving plate 43 to move up by the height of one panel, the panel moving cylinder 45 pushes the panel to the panel waiting position 46.

[0087] In order to further optimize the above technical scheme, the first screw locking mechanism 8 further comprises a first locking cylinder 82, and the first locking cylinder 82 drives the first pneumatic screwdriver 81 to move downward to lock the screw.

[0088] In order to further optimize the above technical scheme, the blanking clamp jaw 9 is further provided with a contact point detection plate 91, and the bottom of the contact point detection plate 91 is provided with a contact point detection contact 92. After the contact point is mounted on the panel, the contact point detection contact 92 can detect whether the contact point has a poor connection problem.

[0089] In order to further optimize the above technical scheme, the turnover mechanism 10 comprises a turnover motor, a turnover plate 101 and a vacuum suction cup; the output end of the turnover motor is connected with the turnover plate 101 and drives the turnover plate 101 to rotate, the semi-finished product part is placed on the turnover plate 101, and the top of the turnover plate 101 is provided with the vacuum suction cup and is adsorbed with the panel; after the turnover plate is turned over, the panel is placed on the blanking plate 18. The turnover motor drives the turnover plate 101 to turn over by 180°, thereby facilitating the installation of the panel and the base; the turnover suction cup can ensure that the semi-finished product part does not fall off during the turnover process.

[0090] In order to further optimize the above technical scheme, the base supply conveying mechanism 11 comprises a base placing box 111, a base moving belt 112, a base moving plate 113, a base moving motor 114 and a base moving cylinder 115; a plurality of bases are stacked in the base placing box 111, and the bottom of the base placing box 111 is provided with the base moving plate 113, and the stacked bases are all arranged on the top of the base moving plate 113; the base moving motor 114 drives the base moving belt 112 to rotate, and the end of the base moving plate 113 extends out of the base placing box 111 and is connected with the base moving belt 112; the base moving cylinder 115 is located on the top of the base placing box 111; after the base moving belt 112 drives the base moving plate 113 to move up by the height of one base, the base moving cylinder 115 pushes the base to move to the top of the blanking plate 18.

[0091] In order to further optimize the above technical scheme, the second screw locking mechanism 13 further comprises a second locking cylinder 132, a transverse sliding rail 133 and a longitudinal sliding rail 134, the second locking cylinder 132 drives the second pneumatic screwdriver 131 to move downward to lock the screw; the transverse sliding rail 133 and the longitudinal sliding rail 134 are in sliding connection, and the second locking cylinder 132 is in sliding connection with the transverse sliding rail 133. The screw at the connecting position of the base and the panel is locked by the second screw locking mechanism 13; since the installed button box product is arranged on the blanking plate, the installation position of the base and the panel is not fixed, so the second locking cylinder 132 adjusts its position through the transverse sliding rail 133 and the longitudinal sliding rail 134, and then locks the screw. The installed button box product is placed in the vibration blanking disc 20 after being clamped by the blanking mechanical arm.

[0092] In order to further optimize the above technical scheme, the feeding end of the button supply conveyor belt 1 is provided with a vibration feeding disc 19; and the vibration blanking disc 20 is arranged near the blanking plate 18. The vibration feeding disc 19 and the vibration blanking disc 20 are outside the protective shell 14, and are driven to vibrate by the vibration motor, so as to facilitate the feeding and blanking outside.

[0093] In order to further optimize the above technical scheme, the device further comprises a controller, which controls the electronic devices in the device, so as to realize the automatic assembly of the button box and improve the production efficiency.

[0094] Working process:

[0095] Start-up preparation

[0096] The buttons, the panel, the contacts and the base are manually supplemented into the corresponding vibration feeding disc 19, the panel placing box 41, the contact supply conveyor belt 6 and the base placing box 111 respectively;

[0097] Button feeding

[0098] The vibration feeding disc 19 feeds the buttons into the button supply conveyor belt 1 in a unified posture;

[0099] The button feeding clamping jaw 2 (the transverse cylinder 15 + the vertical cylinder 16 + the pneumatic clamping jaw 17) grabs the buttons, moves to a certain empty assembly disc 31 of the turntable 3, releases the clamping jaw and retreats to the original position.

[0100] Panel feeding and assembly

[0101] The panel moving motor 44 drives the panel moving belt 42 to move the panel moving plate 43 upward by one panel thickness;

[0102] The panel moving cylinder 45 pushes the uppermost single panel to the panel taking position 46;

[0103] • Panel feeding gripper 5 grabs the panel → put into the same assembly disc 31 → complete the buckle with the button.

[0104] Contact feeding and first locking

[0105] • Contact feeding conveyor belt 6 sends the contact to the feeding position;

[0106] • Contact feeding gripper 7 grabs the contact → put in the corresponding position of the panel;

[0107] • The first locking cylinder 82 is pressed down, and the first pneumatic screwdriver 81 locks the contact and the panel;

[0108] • The contact detection plate 91 is lowered immediately, and the contact detection contact 92 completes the detection, and the unqualified products are rejected at the next station.

[0109] Semi-finished product discharging and turning over

[0110] • Discharging gripper 9 grabs the "button + panel + contact" semi-finished product → sends to the turning over mechanism 10;

[0111] • The vacuum chuck holds the panel, the turning over motor drives the turning over plate 101 to rotate 180°, so that the back of the panel faces up;

[0112] • After the turning over plate 101 is reset, the vacuum chuck is released, and the semi-finished product is stably placed on the discharging plate 18.

[0113] Base feeding and second locking

[0114] • The base moving motor 114 + base moving belt 112 + base moving plate 113 send the base to above the discharging plate 18 in the same step-by-step manner;

[0115] • Base feeding gripper 12 grabs the base → buckles on the top of the turned semi-finished product;

[0116] • The horizontal slide rail 133 + vertical slide rail 134 accurately position the second locking cylinder 132 to the screw hole position;

[0117] • The second pneumatic screwdriver 131 is pressed down and locks the base and the panel, and the button box finished product assembly is completed.

[0118] Finished product discharging

[0119] • The assembled button box is grabbed by the discharging manipulator → put into the vibrating discharging disc 20.

[0120] The various embodiments in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same and similar parts between various embodiments can be referred to each other.

[0121] The foregoing description of the disclosed embodiments enables a person skilled in the art to make or use the application. Modifications of these embodiments will occur to persons of skill in the art, and that the appended claims are intended to cover all such modifications that do not depart from the true spirit and scope of the application. Therefore, the application is not limited to the embodiments shown but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. An automated production line for switch button boxes, characterized in that, include: A button is supplied to the conveyor belt, and the button is supplied to the conveyor belt to deliver the button; Button-operated feeding gripper; A turntable, the top of which is provided with multiple assembly discs, and the button feeding gripper clamps the button and moves it from the button supply conveyor belt into the assembly disc; A panel supply conveying mechanism, wherein the panel supply conveying mechanism conveys a panel; A panel loading gripper transports the panel into the assembly disc for assembly with the button. Contacts are supplied to the conveyor belt, and the contacts are supplied to the conveyor belt to convey contacts; The contact feeding gripper moves the contact from the contact supply conveyor belt to the assembly disc and assembles it with the panel; The first screw fastening mechanism aligns the first pneumatic screwdriver of the first screw fastening mechanism with the screw fastening position of the contact point to lock the contact point to the panel. The unloading gripper removes the semi-finished component after the contact point is connected to the panel; The flipping mechanism is used to place the removed semi-finished parts onto the flipping mechanism for flipping. A base supply conveying mechanism is used to transport the base. The base loading gripper places the base on top of the flipped semi-finished part and engages with the panel. The second screw fastening mechanism aligns the second pneumatic screwdriver of the second screw fastening mechanism with the screw fastening position connecting the base and the panel, and locks the base and the panel together.

2. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The device also includes a protective housing, and the protective housing is transparent.

3. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The button loading gripper, panel loading gripper, contact loading gripper, unloading gripper, and base loading gripper all include a horizontal cylinder, a vertical cylinder, and a pneumatic gripper; the pneumatic gripper is connected to the telescopic end of the vertical cylinder, and the telescopic end of the horizontal cylinder is connected to the fixed end of the vertical cylinder.

4. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The panel supply and conveying mechanism includes: a panel placement box, a panel moving belt, a panel moving plate, a panel moving motor, a panel moving cylinder, and a panel to be picked up; multiple panels are stacked in the panel placement box, and the panel moving plate is located at the bottom of the panel placement box, with all stacked panels positioned on top of the panel moving plate; the panel moving motor drives the panel moving belt to rotate, and the end of the panel moving plate extends out of the panel placement box and connects to the panel moving belt; the panel to be picked up is located at the top of the panel placement box; the panel moving cylinder is located at the top of the panel placement box; when the panel moving belt moves the panel moving plate up by the height of one panel, the panel moving cylinder pushes the panel to the panel to be picked up position.

5. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The first screw fastening mechanism also includes a first locking cylinder, which drives the first pneumatic screwdriver to move down and lock the screw.

6. The equipment for automated production of switch button boxes according to claim 3, characterized in that, The unloading gripper is also equipped with a contact detection plate, and the bottom of the contact detection plate is provided with a contact detection contact.

7. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The flipping mechanism includes a flipping motor, a flipping plate, and a vacuum suction cup; the output end of the flipping motor is connected to the flipping plate and drives the flipping plate to rotate; the semi-finished part is placed on the flipping plate, and the top of the flipping plate is provided with a vacuum suction cup to attract the panel; after the flipping plate flips, the panel is placed on the unloading plate.

8. The equipment for automated production of switch button boxes according to claim 7, characterized in that, The base supply and conveying mechanism includes: a base placement box, a base moving belt, a base moving plate, a base moving motor, and a base moving cylinder; multiple bases are stacked in the base placement box, and the base moving plate is provided at the bottom of the base placement box, with each stacked base positioned on top of the base moving plate; the base moving motor drives the base moving belt to rotate, and the end of the base moving plate extends out of the base placement box and connects to the base moving belt; the base moving cylinder is located at the top of the base placement box; when the base moving belt moves the base moving plate up one base height, the base moving cylinder pushes the base to the top of the unloading plate.

9. The equipment for automated production of switch button boxes according to claim 8, characterized in that, The second screw fastening mechanism also includes a second locking cylinder, a transverse slide rail, and a longitudinal slide rail. The second locking cylinder drives the second pneumatic screwdriver to move down and lock the screw. The transverse slide rail is slidably connected to the longitudinal slide rail, and the second locking cylinder is slidably connected to the transverse slide rail.

10. The equipment for automated production of switch button boxes according to claim 1, characterized in that, The button provides a vibrating feeding plate at the feed end of the conveyor belt; a vibrating feeding plate is also provided near the discharge plate.