Capacitor production laminating device facilitating limiting
By designing an automatic feeding and limiting mechanism, the safety hazards of manually adding accessories in capacitor production were solved, achieving stable and precise pressing of capacitors and improving production efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHENGDU AVIC HUACE TECH CO LTD
- Filing Date
- 2025-05-30
- Publication Date
- 2026-06-02
AI Technical Summary
Existing lamination equipment for capacitor production requires manual addition of accessories, which poses safety hazards and makes it difficult to guarantee the stability and accuracy of production and processing.
A laminating device for capacitor production with easy positioning was designed. It adopts components such as toothed rollers, chain belts, worm gear mechanisms and cylinder pressure plates to achieve automatic feeding, positioning and precise pressing. The stability and accuracy of pressing are ensured by the scale and guide rod ball structure.
It realizes automatic feeding and precise pressing in the capacitor production process, avoids the safety hazards of manual operation, and ensures the stability and accuracy of production.
Smart Images

Figure CN224318316U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of capacitor production technology, specifically to a laminating device for capacitor production that facilitates positioning. Background Technology
[0002] A capacitor is a device in which a non-conductive material is placed between two sets of conductors, and wires are attached to the positive and negative electrodes to carry current. It is used to store charge and is often installed in couplers, filters and other debugging mechanisms. In order to produce and process capacitors quickly, capacitor components need to be placed layer by layer and compacted using a laminating device.
[0003] Ordinary lamination equipment requires manual addition of accessories and lacks auxiliary mechanisms. It requires manual alignment and stacking of materials on top of each other. Entering the pressing chamber is dangerous and makes it difficult to ensure safety during production.
[0004] Now, a novel lamination device for capacitor production that facilitates positioning is proposed to solve the above problems. Utility Model Content
[0005] The purpose of this invention is to provide a laminating device for capacitor production that facilitates positioning, thereby solving the problem of inconvenient feeding mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a laminating device for capacitor production with convenient positioning, comprising a table and a base plate. The base plate is fixed to the left side of the top of the table, and a side plate is fixed between the left side of the base plate and the table. A crossbeam is fixed to the right side of the top of the side plate, and columns are fixed to the front and rear ends of the bottom right side of the crossbeam. A cylinder is fixed at the center inside the crossbeam, and a pressure plate is fixed to the bottom of the cylinder's output end. A plate is placed on the right side of the top of the table, and teeth are movably connected to both sides of the plate. The table has a toothed roller with a chain belt meshing between its outer sides. Motor 1 is fixed on both sides of the front end of the outer side of the plate. A frame is fixed on the right side of the bottom of the table. A worm gear is movably connected between the front and back of the frame. Motor 3 is fixed at the rear of the frame. A worm wheel is meshed on the right side of the worm gear. A lead screw is longitudinally threaded inside the worm wheel. A connecting plate is horizontally fixed at the bottom of the lead screw. Limit rods are fixed at the front and rear of the top of the connecting plate. Through grooves are provided at the front and rear ends of the right side of the table.
[0007] As a further technical solution of this utility model, the output end of the motor three is connected to the worm gear, and the center of the worm wheel is longitudinally provided with a matching screw thread.
[0008] As a further technical solution of this utility model, the limiting rod is embedded inside the through groove, and the limiting rod is symmetrically fixed at the front end and rear end above the connecting plate.
[0009] As a further technical solution of this utility model, cavities are provided on both sides inside the crossbeam, and ball bearings are movably embedded on both sides inside the cavities. Guide rods are fixed on both sides of the top of the pressure plate, and stacking plates are placed on top of the base plate.
[0010] As a further technical solution of this utility model, a scale is provided between the upper and lower ends of the front end of the side plate, and the left side of the pressure plate is attached to the right side of the side plate.
[0011] As a further technical solution of this utility model, a transmission chamber is provided between the front and rear ends inside the base plate, and a screw is movably connected inside the transmission chamber. The front end and rear end of the screw are respectively connected with threaded sleeves, and a push plate is fixed at the top of the threaded sleeve. A second motor is fixed at the front end outside the base plate.
[0012] Compared with the prior art, the beneficial effects of this utility model are: this easy-to-limit lamination device for capacitor production not only realizes automatic pushing of accessories and maintains the stability of pressing, but also prevents plate misalignment;
[0013] (1) By placing a plate on the right side of the top of the table, the plates to be pressed are placed on the right plate. After starting motor one, the toothed roller is rotated and the chain belt is rotated to convey the material to the left. The plates are conveyed one by one and stacked on the bottom plate. After starting motor three, the worm gear in the frame is rotated. The worm wheel can be horizontally rotated at the lower right corner of the table. Then, under the restriction of the limit rod in the through groove, the screw and the plate on top can be vertically raised and lowered. The height of the conveying mechanism is adjusted so that the material plates are stacked on the bottom plate for pressing.
[0014] (2) By fixing a pressure plate at the bottom of the cylinder output end, the piston rod vertically raises and lowers the pressure plate after the cylinder is started, forcing the object to be pressed on the stacked plates. The left side of the pressure plate is attached to the side plate. The scale on the surface can accurately determine the depth of the pressure plate. The guide rod is also embedded in the corresponding cavities on both sides and is pushed by the ball bearings on both sides to prevent the mechanism from jamming during pressing.
[0015] (3) By setting a transmission chamber between the front and back inside the base plate, when the plate is placed on the base plate, the motor rotates the screw and moves the threaded sleeve in opposite directions along the transmission chamber, forcing the threaded sleeve to guide the push plate to move along the gap on the surface of the base plate, and pushes and organizes the stacked plates at the center from the front and back to prevent the plates from shifting and causing errors during pressing. The push plate needs to be removed before pressing to avoid damaging the pressing plate. Attached Figure Description
[0016] Figure 1 This is a frontal cross-sectional view of the present invention.
[0017] Figure 2 This is a front view structural diagram of the plate of this utility model;
[0018] Figure 3 This is a front view cross-sectional structural diagram of the crossbeam of this utility model;
[0019] Figure 4 This is a side view sectional structural diagram of the base plate of this utility model.
[0020] In the diagram: 1. Table body; 2. Base plate; 3. Side plate; 4. Stacking plate; 5. Scale; 6. Crossbeam; 7. Guide rod; 8. Cylinder; 9. Cavity; 10. Pressure plate; 11. Column; 12. Limiting rod; 13. Plate; 14. Toothed roller; 15. Motor 1; 16. Worm gear; 17. Connecting plate; 18. Lead screw; 19. Motor 2; 20. Worm gear; 21. Motor 3; 22. Frame; 23. Chain belt; 24. Threaded sleeve; 25. Screw; 26. Transmission chamber; 27. Push plate; 28. Through groove; 29. Ball bearing. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Please see Figure 1-4This utility model provides an embodiment of a laminating device for capacitor production that facilitates positioning. It includes a table body 1 and a base plate 2. The base plate 2 is fixed to the left side of the top of the table body 1, and a side plate 3 is fixed between the left side of the base plate 2 and the table body 1. A crossbeam 6 is fixed to the right side of the top of the side plate 3, and columns 11 are fixed to the front and rear ends of the bottom right side of the crossbeam 6. A cylinder 8 is fixed at the center inside the crossbeam 6, and a pressure plate 10 is fixed to the bottom of the output end of the cylinder 8. A plate 13 is placed on the right side of the top of the table body 1, and toothed rollers 14 are movably connected to both sides inside the plate 13. The parts are connected by a chain belt 23. Motor 15 is fixed on both sides of the front end of the plate 13. Frame 22 is fixed on the right side of the bottom of the table body 1. Worm 20 is movably connected between the front and back of the frame 22. Motor 3 21 is fixed at the rear of the frame 22. Worm wheel 16 is connected to the right side of worm 20. Screw 18 is connected to the inside of worm wheel 16 with longitudinal thread. Connecting plate 17 is fixed to the bottom of screw 18 laterally. Limiting rods 12 are fixed to the front and rear of the top of connecting plate 17. Through grooves 28 are provided at the front and rear of the right side of the table body 1.
[0023] The output end of motor 21 is connected to the worm 20. The center of the worm wheel 16 is longitudinally provided with a matching thread for lead screw 18. The limiting rod 12 is embedded in the through groove 28. The limiting rod 12 is symmetrically fixed at the front and rear ends above the connecting plate 17.
[0024] Specifically, such as Figure 1 and Figure 2 As shown, the boards to be pressed are placed on top of the right plate 13. After starting the motor 15, the toothed roller 14 rotates and the chain belt 23 rotates to convey the board to the left, and the boards are conveyed one by one and stacked on top of the bottom plate 2. After starting the motor 3 21, the worm gear 20 in the frame 22 is rotated. The worm wheel 16 can be horizontally rotated at the lower right corner of the table 1. Then, under the restriction of the limit rod 12 in the through groove 28, the lead screw 18 and the plate 13 on top can be raised and lowered vertically, and the height of the conveying mechanism can be adjusted.
[0025] The beam 6 has cavities 9 on both sides inside, and ball bearings 29 are movably embedded in the cavities 9 on both sides. Guide rods 7 are fixed on both sides of the top of the pressure plate 10. Stacking plates 4 are placed on the top of the bottom plate 2. A scale 5 is set between the top and bottom of the front end of the side plate 3. The left side of the pressure plate 10 is attached to the right side of the side plate 3.
[0026] Specifically, such as Figure 1 and Figure 3As shown, after the cylinder 8 is started, the piston rod vertically raises and lowers the pressure plate 10, forcing the object to be pressed on the stacked plates. The left side of the pressure plate 10 is attached to the side plate 3. The scale 5 on the surface can accurately determine the depth of the pressure plate 10. The guide rod 7 is also embedded in the corresponding cavities 9 on both sides and is pushed by the ball bearings 29 on both sides for lubrication.
[0027] A transmission chamber 26 is provided between the front and rear of the base plate 2, and a screw 25 is movably connected inside the transmission chamber 26. The front and rear ends of the screw 25 are respectively connected by threaded sleeves 24, and a push plate 27 is fixed at the top of the threaded sleeve 24. A motor 29 is fixed at the front end of the base plate 2.
[0028] Specifically, such as Figure 1 and Figure 4 As shown, after the board material is placed on the base plate 2, the screw 25 is rotated by the motor 219 and the threaded sleeve 24 is moved back and forth along the transmission chamber 26. This forces the threaded sleeve 24 to guide the push plate 27 to move along the gap on the surface of the base plate 2, and pushes and organizes the stacked boards at the center from both the front and rear to prevent the boards from shifting and causing errors during pressing.
[0029] Working Principle: In use, the boards to be pressed are first placed on top of the right-hand plate 13. After starting motor 15, the toothed roller 14 rotates and the chain belt 23 is rotated, conveying the boards to the left. The boards are then stacked one by one above the bottom plate 2. After starting motor 3 21, the worm gear 20 in the frame 22 rotates, allowing the worm wheel 16 to be horizontally rotated at the lower right corner of the table 1. Then, under the constraint of the limiting rod 12 in the through slot 28, the lead screw 18 and the top plate 13 can be vertically raised and lowered, adjusting the height of the conveying mechanism. Once the boards are on the bottom plate 2, the electric... The rotating screw 25 of the second machine 19 moves the threaded sleeve 24 back and forth along the transmission chamber 26, forcing the threaded sleeve 24 to guide the push plate 27 to move along the gap on the surface of the bottom plate 2, and pushes and arranges the stacked plates at the center from the front and rear. Finally, the cylinder 8 is activated and the piston rod vertically raises and lowers the pressure plate 10, forcing it to press on the stacked plates. The left side of the pressure plate 10 is attached to the side plate 3. The scale 5 on the surface can accurately determine the depth of the pressure plate 10. The guide rod 7 is also embedded in the corresponding cavities 9 on both sides and is lubricated and pushed by the ball bearings 29 on both sides.
[0030] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A capacitors production lamination device for easy positioning, comprising a table body (1) and a base plate (2), characterized in that: A base plate (2) is fixed to the left side of the top of the table body (1), and a side plate (3) is fixed between the left side of the base plate (2) and the table body (1). A crossbeam (6) is fixed to the right side of the top of the side plate (3), and columns (11) are fixed to the front and rear ends of the bottom right side of the crossbeam (6). A cylinder (8) is fixed to the center inside the crossbeam (6), and a pressure plate (10) is fixed to the bottom of the output end of the cylinder (8). A plate (13) is placed on the right side of the top of the table body (1), and toothed rollers (14) are movably connected to both sides inside the plate (13). A chain belt (23) is meshed between the outer sides of the toothed rollers (14). Motor 1 (15) is fixed on both sides of the front end of the table (1). Frame (22) is fixed on the right side of the bottom of the table (1). Worm (20) is movably connected between the front and back of the frame (22). Motor 3 (21) is fixed at the rear of the frame (22). Worm wheel (16) is meshed on the right side of worm (20). Screw (18) is longitudinally threaded inside worm wheel (16). Connecting plate (17) is horizontally fixed at the bottom of screw (18). Limit rod (12) is fixed at the front and rear of the top of connecting plate (17). Through groove (28) is provided at the front and rear of the right side of the table (1).
2. The device for laminating of capacitors according to claim 1, wherein: The output end of the motor (21) is in front of the worm (20), and the worm wheel (16) has a longitudinally arranged pattern of matching lead screw (18) at the center inside.
3. The device for laminating of capacitors as claimed in claim 1, wherein: The limiting rod (12) is embedded inside the through groove (28), and the limiting rod (12) is symmetrically fixed at the front end and rear end above the connecting plate (17).
4. The device for laminating of capacitors according to claim 1, wherein: The beam (6) has cavities (9) on both sides inside, and ball bearings (29) are movably embedded on both sides inside the cavity (9). Guide rods (7) are fixed on both sides of the top of the pressure plate (10). Stacking plates (4) are placed on top of the base plate (2).
5. A laminating apparatus for capacitor production with convenient positioning as described in claim 1, characterized in that: A scale (5) is provided between the top and bottom of the front end of the side plate (3), and the left side of the pressure plate (10) is attached to the right side of the side plate (3).
6. A laminating apparatus for capacitor production with convenient positioning as described in claim 1, characterized in that: A transmission chamber (26) is provided between the front and rear of the base plate (2), and a screw (25) is movably connected inside the transmission chamber (26). The front and rear ends of the screw (25) are respectively connected by threaded sleeves (24), and a push plate (27) is fixed at the top of the threaded sleeve (24). A motor (19) is fixed at the front end of the base plate (2).