Accessory feeding work station of circuit breaker shell assembling equipment
By introducing an accessory vibration loading box and an automated clamping system into the circuit breaker housing assembly equipment, the problems of slow manual loading and poor equipment versatility have been solved, achieving efficient and accurate accessory loading and assembly, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202422651254.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-10-31
AI Technical Summary
The existing circuit breaker housing assembly process has problems such as slow manual loading speed, low efficiency, discontinuity, poor equipment versatility, difficulty in adapting to accessories of different sizes and shapes, unstable assembly quality, high labor intensity for workers, and an unfriendly working environment.
Adopt accessory vibration loading box and vibration loading mechanism, combined with accessory conveying track, placement disc and clamping mechanism, through vibration motor, pneumatic cylinder and adjustment components to achieve automatic loading and precise clamping, adapt to different accessory sizes and assembly requirements.
It improves loading speed and efficiency, ensures accurate positioning of accessories and assembly quality, reduces the impact of human factors, reduces labor intensity, and improves production consistency and safety.
Smart Images

Figure CN223313385U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of accessory loading, in particular to an accessory loading station of circuit breaker housing assembly equipment. Background Art
[0002] During the assembly process of the circuit breaker housing, accessories need to be loaded. The product accessory loading mechanism proposed in Chinese utility model patent application No.: CN202323341660.X includes: a frame; a slide rail, which is arranged on the frame; a staggered cutting and pushing mold, which is slidably connected to the slide rail, and the staggered cutting and pushing mold is provided with a blanking trough and a notch, the notch extends from the edge of the staggered cutting and pushing mold to the blanking trough, and the depth of the blanking trough is equal to the thickness of the product to be welded; a hopper, which is arranged above the staggered cutting and pushing mold, and a blanking hole is provided at the bottom of the hopper.
[0003] However, existing accessory loading methods have some shortcomings that need improvement. In existing technologies, manual loading is often used, which is slow and inefficient. It is also susceptible to worker proficiency and fatigue, leading to extended production cycles. The loading process can also be inconsistent and unstable, prone to interruptions, impacting the overall smoothness of the production process.
[0004] Existing loading and assembly equipment can be limited in versatility, making it difficult to adapt to accessories of varying sizes and shapes. This requires frequent equipment replacement or complex adjustments, increasing production costs and time. The equipment can also lack adjustability, preventing the position and angle of accessories from being flexibly adjusted to specific assembly requirements, limiting product diversity.
[0005] Due to the uncertainty of manual operation and inaccurate loading, the assembly quality of circuit breaker housings can be unstable and prone to defective products. The lack of precise control and adjustment mechanisms may prevent accessories from achieving optimal fit during assembly, affecting product performance and reliability.
[0006] Manual loading and assembly require workers to perform a large amount of repetitive labor, which is labor-intensive and prone to fatigue and injury. This also affects work efficiency and quality. The working environment can be unfriendly, impacting workers' health. Therefore, we have developed an accessory loading station for circuit breaker case assembly equipment to address this issue. Utility Model Content
[0007] The purpose of the present invention is to address the problems raised by the existing background technology. In order to achieve the above-mentioned purpose of the utility model, the present invention provides the following technical solutions: an accessory loading station for circuit breaker housing assembly equipment, comprising an accessory vibrating loading box, an accessory vibrating loading mechanism provided in the accessory vibrating loading box, the accessory vibrating loading mechanism connected to an accessory placement disc via an accessory conveying track, the accessory placement disc connected to an accessory disc rotating mechanism, an accessory clamping mechanism provided above the accessory placement disc, the accessory clamping mechanism connected to a clamping mechanism vertical movement adjustment component, the clamping mechanism vertical movement adjustment component connected to a clamping mechanism horizontal movement adjustment component.
[0008] As the preferred technical solution of the present invention, the accessory vibrating feeding mechanism is provided with a left accessory vibrating feeding tray and a right accessory vibrating feeding tray; the left accessory vibrating feeding tray and the right accessory vibrating feeding tray are both provided with a vibrating tray spiral ascending track; and a vibrating motor is provided under the left accessory vibrating feeding tray and the right accessory vibrating feeding tray.
[0009] As a preferred technical solution of the present utility model, the accessory disc rotation mechanism is provided with a disc rotation shaft; the disc rotation shaft is connected to the accessory placement disc, a circular gear is provided below the disc rotation shaft, and the circular gear is meshed with a spur gear; the spur gear is connected to the disc rotation telescopic rod, and the disc rotation telescopic rod is provided inside the disc rotation pneumatic cylinder.
[0010] As a preferred technical solution of the present invention, the accessory clamping mechanism is provided with a clamping claw; the clamping claw is connected to a clamping cylinder via a telescopic rod, and the clamping cylinder is fixed on a fixing frame.
[0011] As a preferred technical solution of the present invention, the clamping mechanism's up and down movement adjustment assembly is provided with an up and down adjustment cylinder; the up and down adjustment cylinder is connected to the up and down adjustment telescopic rod, and the up and down adjustment telescopic rod is connected to the up and down adjustment frame.
[0012] As an optimal technical solution of the present invention, the left and right movement adjustment component of the clamping mechanism is provided with a left and right movement adjustment beam; a left and right movement adjustment slide rail is provided in the left and right movement adjustment beam; a left and right movement adjustment telescopic rod is provided at the front end of the left and right movement adjustment beam; the left and right movement adjustment telescopic rod is connected to the left and right movement adjustment pneumatic cylinder.
[0013] As a preferred technical solution of the present invention, an adjustment beam support frame is provided below the left-right movable adjustment beam.
[0014] As a preferred technical solution of the present utility model, the upper and lower adjustment frames are connected to the fixing frame.
[0015] As a preferred technical solution of the present invention, the up and down adjustment cylinder is connected to the left and right movable adjustment telescopic rod.
[0016] As a preferred technical solution of the present invention, an accessory slot is provided on the accessory placement disc.
[0017] Compared with the existing technology, the present invention has the following advantages: In the present invention, the accessory vibrating feeding mechanism uses a vibrating motor to automatically feed accessories along the spiral upward track of the vibrating disk, saving the time and energy of manual feeding and improving the speed and efficiency of feeding. The accessory placement disc cooperates with the accessory disc rotation mechanism to quickly transport accessories to the appropriate position, reducing waiting time and improving overall production efficiency.
[0018] The accessory slots on the accessory placement disc accurately position and secure accessories, ensuring they won't shift during subsequent operations and improving loading accuracy. The accessory clamping mechanism is connected to the vertical and horizontal adjustment assemblies, allowing for flexible adjustment of the clamping position and height to suit varying accessory sizes and assembly requirements, enhancing the versatility and adaptability of the equipment.
[0019] The disc-rotating pneumatic cylinder precisely controls the rotation angle of the accessory placement disc through the coordination of a disc-rotating telescopic rod, spur gears, and circular gears to meet diverse assembly requirements. Precise loading and clamping ensures the positional accuracy and stability of accessories during assembly, thereby improving the assembly quality of the circuit breaker housing.
[0020] Automated loading and assembly processes reduce the impact of human factors on assembly quality, improve product consistency and reliability, reduce physical labor and labor intensity, and improve work comfort and safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 A schematic diagram of the structure provided by the utility model;
[0022] Figure 2 This is a schematic diagram of the structure of the clamping mechanism provided by the utility model that moves up and down to adjust the assembly;
[0023] Figure 3 This is a schematic diagram of the structure of the accessory disc rotating mechanism provided by the utility model;
[0024] Figure 4 This is a schematic diagram of the accessory clamping mechanism provided by the utility model;
[0025] Figure 5This is a schematic diagram of the structure of the left-right movable adjustment component of the clamping mechanism provided by the utility model;
[0026] Figure 6 This is a schematic diagram of the structure of the accessory disc rotating mechanism provided by the utility model;
[0027] Figure 7 This is a schematic diagram of the structure of the accessory vibration feeding mechanism provided by the utility model;
[0028] Figure 8 This is a schematic diagram of the top view of the accessory vibration feeding mechanism provided by the utility model;
[0029] Figure 9 This is a schematic diagram of the spiral ascending track structure of the vibrating disk provided by the utility model.
[0030] Indicated in the figure:
[0031] 1. Accessory vibrating loading box; 2. Accessory vibrating loading mechanism; 201. Left accessory vibrating loading tray; 202. Right accessory vibrating loading tray; 203. Vibrating tray spiral ascending track; 204. Vibrating motor; 3. Accessory conveying track; 4. Accessory placement disc; 401. Accessory slot; 5. Accessory disc rotating mechanism; 501. Disc rotating shaft; 502. Circular gear; 503. Spur gear; 504. Disc rotating telescopic rod; 505. Disc rotating pneumatic cylinder; 6. , accessory clamping mechanism; 601, clamping claw; 602, clamping cylinder; 603, fixed frame; 7, clamping mechanism up and down movement adjustment component; 701, up and down adjustment cylinder; 702, up and down adjustment telescopic rod; 703, up and down adjustment frame; 8, clamping mechanism left and right movement adjustment component; 801, left and right movement adjustment beam; 802, left and right movement adjustment slide rail; 803, left and right movement adjustment telescopic rod; 804, left and right movement adjustment pneumatic cylinder; 9, adjustment beam support frame. DETAILED DESCRIPTION
[0032] To make the purpose, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be described clearly and completely in conjunction with the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them.
[0033] Therefore, the following detailed description of the embodiments of the present invention is not intended to limit the scope of the claimed invention, but merely represents some embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. It should be noted that, in the absence of conflict, the embodiments of the present invention and the features and technical solutions therein can be combined with each other. It should be noted that similar numbers and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.
[0034] Example 1: Please refer to Figures 1-9 , an accessory loading station of a circuit breaker housing assembly equipment, including an accessory vibrating loading box 1, an accessory vibrating loading mechanism 2 is provided in the accessory vibrating loading box 1, the accessory vibrating loading mechanism 2 is connected to an accessory placement disc 4 through an accessory conveying track 3, the accessory placement disc 4 is connected to an accessory disc rotating mechanism 5, an accessory clamping mechanism 6 is provided above the accessory placement disc 4, the accessory clamping mechanism 6 is connected to a clamping mechanism up and down movement adjustment component 7, and the clamping mechanism up and down movement adjustment component 7 is connected to a clamping mechanism left and right movement adjustment component 8.
[0035] The accessory vibrating loading mechanism 2 is provided with a left accessory vibrating loading tray 201 and a right accessory vibrating loading tray 202; a vibrating tray spiral ascending track 203 is provided in both the left accessory vibrating loading tray 201 and the right accessory vibrating loading tray 202; a vibrating motor 204 is provided below both the left accessory vibrating loading tray 201 and the right accessory vibrating loading tray 202.
[0036] The accessory disc rotating mechanism 5 is provided with a disc rotating shaft 501; the disc rotating shaft 501 is connected to the accessory placement disc 4, and a circular gear 502 is provided below the disc rotating shaft 501, and the circular gear 502 is engaged with the spur gear 503; the spur gear 503 is connected to the disc rotating telescopic rod 504, and the disc rotating telescopic rod 504 is set inside the disc rotating pneumatic cylinder 505.
[0037] The accessory clamping mechanism 6 is provided with a clamping claw 601 ; the clamping claw 601 is connected to a clamping cylinder 602 via a telescopic rod, and the clamping cylinder 602 is fixed on a fixing frame 603 .
[0038] The clamping mechanism vertical movement adjustment component 7 is provided with an up and down adjustment cylinder 701 ; the up and down adjustment cylinder 701 is connected to the up and down adjustment telescopic rod 702 , and the up and down adjustment telescopic rod 702 is connected to the up and down adjustment frame 703 .
[0039] The left-right movement adjustment component 8 of the clamping mechanism is provided with a left-right movement adjustment beam 801; a left-right movement adjustment slide rail 802 is provided inside the left-right movement adjustment beam 801; a left-right movement adjustment telescopic rod 803 is provided at the front end of the left-right movement adjustment beam 801; the left-right movement adjustment telescopic rod 803 is connected to the left-right movement adjustment pneumatic cylinder 804.
[0040] An adjustment beam support frame 9 is provided below the left-right movable adjustment beam 801. The up-down adjustment frame 703 is connected to the fixed frame 603. The up-down adjustment cylinder 701 is connected to the left-right movable adjustment telescopic rod 803. An accessory slot 401 is provided on the accessory placement disc 4.
[0041] The accessory vibrating loading mechanism 2 uses a vibrating motor 204 to automatically load accessories along the spiral ascending track 203 of the vibrating disk, saving the time and effort of manual loading and improving the speed and efficiency of loading. The accessory placement disk 4 cooperates with the accessory disk rotation mechanism 5 to quickly transport accessories to the appropriate location, reducing waiting time and improving overall production efficiency.
[0042] The accessory slot 401 on the accessory placement disc 4 accurately positions and secures accessories, ensuring they won't shift during subsequent operations, improving loading accuracy. The accessory clamping mechanism 6, connected to the vertical and horizontal adjustment components 7 and 8, allows for flexible adjustment of the clamping position and height to suit varying accessory sizes and assembly requirements, enhancing the device's versatility and adaptability.
[0043] The disc-rotating pneumatic cylinder 505 precisely controls the rotation angle of the accessory placement disc 4 by working in conjunction with the disc-rotating telescopic rod 504, spur gear 503, and circular gear 502, meeting various assembly requirements. Precise loading and clamping ensures the positional accuracy and stability of accessories during assembly, thereby improving the assembly quality of the circuit breaker housing.
[0044] Automated loading and assembly processes reduce the impact of human factors on assembly quality, improve product consistency and reliability, reduce physical labor and labor intensity, and improve work comfort and safety.
[0045] The specific working principle of the accessory loading station of the circuit breaker housing assembly equipment:
[0046] Accessory vibration loading: The left accessory vibration loading tray 201 and the right accessory vibration loading tray 202 in the accessory vibration loading mechanism 2 are both provided with a vibration tray spiral ascending track 203. After the vibration motor 204 below is started, vibration is generated to make the accessories move upward along the spiral ascending track.
[0047] Accessories are transported to the accessory placement disc 4 via the accessory transport track 3 .
[0048] The accessory placement disc 4 rotates: The disc-rotating telescopic rod 504 within the disc-rotating pneumatic cylinder 505 pushes the spur gear 503, which meshes with the circular gear 502, thereby rotating the disc-rotating shaft 501. The disc-rotating shaft 501 is connected to the accessory placement disc 4, causing it to rotate and transport the accessories to the appropriate location.
[0049] Accessory clamping: The clamping cylinder 602 controls the clamping claw 601 through the telescopic rod to clamp the accessory. The clamping cylinder 602 is fixed to the fixed frame 603 to ensure the stability of the clamping action.
[0050] Clamping mechanism moves up and down: The up and down adjustment cylinder 701 pushes the up and down adjustment frame 703 to move up and down through the up and down adjustment telescopic rod 702. The up and down adjustment frame 703 is connected to the fixed frame 603, thereby driving the accessory clamping mechanism 6 to move up and down to adjust the height of the clamped accessory.
[0051] Clamping Mechanism Left-Right Movement Adjustment: The left-right movement adjustment pneumatic cylinder 804 pushes the left-right movement adjustment beam 801 via the left-right movement adjustment telescopic rod 803. The left-right movement adjustment beam 801 is equipped with a left-right movement adjustment slide rail 802, enabling smooth left-right movement. The vertical adjustment cylinder 701 is connected to the left-right movement adjustment telescopic rod 803, enabling left-right movement of the accessory clamping mechanism 6, accurately placing the clamped accessory in the desired position.
[0052] Accessory placement: The accessory placement disc 4 is provided with an accessory slot 401 for fixing and positioning accessories so that the accessory clamping mechanism 6 can operate accurately.
[0053] Example 2: An accessory loading station of a circuit breaker housing assembly device starts the accessory vibration loading mechanism 2, and the vibration motor 204 under the left accessory vibration loading tray 201 and the right accessory vibration loading tray 202 operates at a power of 200W, so that the accessory parts move upward along the spiral ascending track 203 of the vibration tray, and the track height is 80mm.
[0054] The parts pass through the accessory conveying track 3 with a length of 500 mm and a width of 50 mm and arrive at the accessory slot 401 of the accessory placement disc 4. The diameter of the accessory placement disc 4 is 400 mm and the slot diameter is 10 mm.
[0055] Disc-rotating telescopic rod 504 inside disc-rotating pneumatic cylinder 505 pushes spur gear 503, which in turn rotates circular gear 502, thereby rotating disc-rotating shaft 501. Circular gear 502 has 30 teeth, while spur gear 503 has 20. Disc-rotating pneumatic cylinder 505 has a stroke of 100 mm, rotating the slot containing the components into the desired position.
[0056] The clamping cylinder 602 controls the clamping claw 601 through the telescopic rod. The length of the clamping claw 601 is 80 mm, the stroke of the clamping cylinder 602 is 50 mm, and the clamping force is 200 N, which clamps the accessory parts on the accessory placement disc 4.
[0057] The up and down adjustment cylinder 701 pushes the up and down adjustment frame 703 to move up and down through the up and down adjustment telescopic rod 702. The stroke of the up and down adjustment cylinder 701 is 200mm, and the diameter of the up and down adjustment telescopic rod 702 is 20mm, which adjusts the parts to the appropriate height.
[0058] The left and right movable adjustment pneumatic cylinder 804 pushes the left and right movable adjustment beam 801 through the left and right movable adjustment telescopic rod 803. The length of the left and right movable adjustment beam 801 is 600mm, the length of the left and right movable adjustment slide rail 802 is 500mm, the stroke of the left and right movable adjustment telescopic rod 803 is 300mm, and the stroke of the left and right movable adjustment pneumatic cylinder 804 is 300mm, so that the clamped parts can be accurately moved to the designated position for assembly.
[0059] Example 3: An accessory loading station of a circuit breaker housing assembly device, wherein the vibration motors 204 under the left accessory vibration loading tray 201 and the right accessory vibration loading tray 202 of the accessory vibration loading mechanism 2 also operate at a power of 200W, and large parts move on a spiral ascending track 203 of the vibration tray, and the track height is 80mm.
[0060] The parts are transported along the 500mm long and 50mm wide accessory conveying track 3 to the accessory placement disc 4 in the accessory drawer slot 401. Due to the large size of the parts, the diameter of the accessory placement disc 4 is 500mm, and the drawer slot diameter is 20mm.
[0061] The disc rotating mechanism operates. A telescopic rod 504 inside a disc rotating pneumatic cylinder 505 pushes a spur gear 503, which in turn rotates a circular gear 502, which in turn rotates the disc rotating shaft 501. Circular gear 502 has 30 teeth, while spur gear 503 has 20. The disc rotating pneumatic cylinder 505 has a stroke of 100 mm, rotating the slot holding the large component into position.
[0062] The clamping cylinder 602 controls the clamping claw 601 through a telescopic rod. The length of the clamping claw 601 is 100 mm to better clamp large parts. The stroke of the clamping cylinder 602 is 60 mm and the clamping force is 300 N.
[0063] The up and down adjustment cylinder 701 pushes the up and down adjustment frame 703 to move up and down through the up and down adjustment telescopic rod 702. The stroke of the up and down adjustment cylinder 701 is 250mm, and the diameter of the up and down adjustment telescopic rod 702 is 25mm. The height of the parts is adjusted according to assembly requirements.
[0064] The left and right movable adjustment pneumatic cylinder 804 pushes the left and right movable adjustment beam 801 through the left and right movable adjustment telescopic rod 803. The length of the left and right movable adjustment beam 801 is 700mm, the length of the left and right movable adjustment slide rail 802 is 600mm, the stroke of the left and right movable adjustment telescopic rod 803 is 350mm, and the stroke of the left and right movable adjustment pneumatic cylinder 804 is 350mm, which can accurately move the clamped large parts to the specified position for assembly.
[0065] The workflow steps of the accessory loading station of the circuit breaker housing assembly equipment are as follows:
[0066] Start the accessory vibrating feeding mechanism 2: the vibration motor 204 below the left accessory vibrating feeding tray 201 and the right accessory vibrating feeding tray 202 starts working, generating vibration. The accessories gradually move upward under the action of the vibrating tray spiral rising track 203.
[0067] Accessory conveying: The accessories in the vibrating loading tray are conveyed to the accessory slot 401 of the accessory placement disc 4 through the accessory conveying track 3 .
[0068] The accessory placement disc 4 rotates: The telescopic rod 504 within the disc-rotating pneumatic cylinder 505 pushes the spur gear 503. This drives the meshing circular gear 502, which in turn rotates the disc-rotating shaft 501. This shaft 501 rotates the accessory placement disc 4, moving the accessory slot into the desired position.
[0069] Accessory clamping: The clamping cylinder 602 controls the clamping claw 601 through the telescopic rod to clamp the accessory on the accessory placement disc 4.
[0070] The clamping mechanism moves up and down: the up and down adjustment cylinder 701 pushes the up and down adjustment frame 703 to move up and down through the up and down adjustment telescopic rod 702. The up and down adjustment frame 703 drives the fixed frame 603 and the accessory clamping mechanism 6 to move up and down as a whole, adjusting the accessory to a suitable height.
[0071] Clamping Mechanism Left-Right Movement Adjustment: The left-right movement adjustment pneumatic cylinder 804 pushes the left-right movement adjustment beam 801 via the left-right movement adjustment telescopic rod 803. The left-right movement adjustment beam 801 moves left and right along the left-right movement adjustment slide rail 802, driving the accessory clamping mechanism 6 to move left and right, allowing the clamped accessory to be accurately moved to the specified position.
[0072] Accessory placement: After the accessory clamping mechanism 6 moves the accessory to the designated position, the clamping cylinder 602 releases the clamping claw 601 and places the accessory at the corresponding position.
[0073] Repeat the above steps to load and assemble the next accessory.
[0074] The above embodiments are only used to illustrate the present invention and are not intended to limit the technical solutions described in the present invention. Although this specification has described the present invention in detail with reference to the above embodiments, the present invention is not limited to the above specific implementation methods. Therefore, any modification or equivalent replacement of the present invention; and all technical solutions and improvements thereof that do not depart from the spirit and scope of the present invention are included in the scope of the claims of the present invention.
Claims
1. An accessory loading station for circuit breaker housing assembly equipment, comprising an accessory vibration loading box (1), characterized in that: An accessory vibrating feeding box (1) is provided with an accessory vibrating feeding mechanism (2), the accessory vibrating feeding mechanism (2) is connected to an accessory placing disc (4) via an accessory conveying track (3), the accessory placing disc (4) is connected to an accessory disc rotating mechanism (5), an accessory clamping mechanism (6) is provided above the accessory placing disc (4), the accessory clamping mechanism (6) is connected to a clamping mechanism up-and-down movement adjustment component (7), and the clamping mechanism up-and-down movement adjustment component (7) is connected to a clamping mechanism left-and-right movement adjustment component (8).
2. The accessory loading station of the circuit breaker housing assembly equipment according to claim 1, characterized in that: The accessory vibrating loading mechanism (2) is provided with a left accessory vibrating loading tray (201) and a right accessory vibrating loading tray (202); a vibrating tray spiral ascending track (203) is provided in each of the left accessory vibrating loading tray (201) and the right accessory vibrating loading tray (202); and a vibrating motor (204) is provided below each of the left accessory vibrating loading tray (201) and the right accessory vibrating loading tray (202).
3. The accessory loading station of the circuit breaker housing assembly equipment according to claim 1, characterized in that: The accessory disc rotating mechanism (5) is provided with a disc rotating shaft (501), the disc rotating shaft (501) is connected to the accessory placement disc (4), a circular gear (502) is provided below the disc rotating shaft (501), the circular gear (502) is meshed with a spur gear (503), the spur gear (503) is connected to a disc rotating telescopic rod (504), and the disc rotating telescopic rod (504) is provided inside the disc rotating pneumatic cylinder (505).
4. The accessory loading station of the circuit breaker housing assembly equipment according to claim 1, characterized in that: The accessory clamping mechanism (6) is provided with a clamping claw (601), the clamping claw (601) is connected to a clamping cylinder (602) via a telescopic rod, and the clamping cylinder (602) is fixed on a fixing frame (603).
5. The accessory loading station of the circuit breaker housing assembly equipment according to claim 1, characterized in that: The clamping mechanism up and down movement adjustment component (7) is provided with an up and down adjustment cylinder (701), the up and down adjustment cylinder (701) is connected to an up and down adjustment telescopic rod (702), and the up and down adjustment telescopic rod (702) is connected to an up and down adjustment frame (703).
6. The accessory loading station of the circuit breaker housing assembly equipment according to claim 1, characterized in that: The clamping mechanism left-right movement adjustment component (8) is provided with a left-right movement adjustment beam (801), a left-right movement adjustment slide rail (802) is provided in the left-right movement adjustment beam (801), a left-right movement adjustment telescopic rod (803) is provided at the front end of the left-right movement adjustment beam (801), and the left-right movement adjustment telescopic rod (803) is connected to the left-right movement adjustment pneumatic cylinder (804).
7. The accessory loading station of the circuit breaker housing assembly equipment according to claim 6, characterized in that: An adjustment beam support frame (9) is provided below the left-right movable adjustment beam (801).
8. The accessory loading station of the circuit breaker housing assembly equipment according to claim 5, characterized in that: The upper and lower adjustment frames (703) are connected to the fixing frame (603).
9. The accessory loading station of the circuit breaker housing assembly equipment according to claim 5, characterized in that: The up-and-down adjustment cylinder (701) is connected to the left-and-right movement adjustment telescopic rod (803).
10. The accessory loading station of circuit breaker housing assembly equipment according to claim 1, characterized in that: The accessory placement disc (4) is provided with an accessory slot (401).
Citation Information
Patent Citations
Product accessory feeding mechanism
CN221715935U