A waste cleaning temperature controller electrode sheet production punch forming device
By introducing cleaning, conveying, and storage mechanisms into the temperature controller electrode sheet production equipment, waste materials are automatically cleaned and collected, solving the problems of processing accuracy and safety caused by waste accumulation and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIUJIANG HENGTONG AUTOCONTROL DEVICE
- Filing Date
- 2025-02-13
- Publication Date
- 2026-06-26
AI Technical Summary
Existing stamping equipment for thermostat electrode production lacks waste removal capabilities, leading to waste accumulation that affects processing accuracy and safety, increases downtime, and reduces production efficiency.
A device comprising cleaning, conveying, and storage mechanisms was designed. It automatically cleans waste using motor-driven gears and cleaning brushes, and automatically collects and compresses the waste through a conveying box and a storage box.
It enables automatic waste removal without stopping the machine, ensuring stamping quality, improving production efficiency, and reducing safety hazards.
Smart Images

Figure CN119951923B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of thermostat electrode production technology, specifically to a thermostat electrode production stamping and forming equipment that allows for waste disposal. Background Technology
[0002] A thermostat is a temperature-sensitive controller with self-operating protection, permanent circuit breaking without power interruption, and self-reset function after power failure. Power failure reset means that after the temperature-sensitive element deforms and breaks the moving and stationary contacts, the heating circuit is turned on, so that the temperature-sensitive element continues to maintain its deformed state under the contact of the heating element, causing the moving and stationary contacts to remain broken. Manual intervention is required to cut off the power supply before the temperature-sensitive element returns to its initial state. Thermostats have a wide range of applications, and different types of thermostats are used in many products such as home appliances, motors, refrigeration or heating systems.
[0003] The temperature controller uses heating electrodes to conduct heat and achieve temperature control. The heating electrodes consist of conductive sheets, insulating sheets, a heating device, and wires for connecting to the outside. A temperature sensor is installed between the insulating sheet and the conductive sheet, and the two ends of the temperature sensor are connected to terminals via wires. The heating electrodes have a temperature control function and have heat dissipation mesh on the inside to fully dissipate local heat, making them more convenient, comfortable, and safe to use. During the production of the electrodes, they need to be stamped to facilitate the forming of the electrodes and subsequent work.
[0004] Electrode sheets generate waste during the stamping process. Existing stamping equipment generally does not have a waste cleaning function. As the waste accumulates on the processing surface, after prolonged use, the electrode sheet placement and processing position may become mismatched, leading to substandard stamping. If cleaning is done manually, the operator needs to stop the machine to clean the waste around the stamping die, increasing downtime and reducing production efficiency. If the machine is not stopped to clean the waste, the close proximity of the waste to the stamping area increases the safety hazard for the operator. Summary of the Invention
[0005] The purpose of this invention is to provide a stamping and forming equipment for producing thermostat electrode sheets that allows for waste disposal, in order to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a stamping and forming equipment for producing thermostat electrode sheets that can be cleaned of waste materials, comprising an outer frame, wherein a motor is fixedly installed on the inner wall of the outer frame, and a base is fixedly connected to the bottom of the outer frame;
[0007] The output shaft of the motor is equipped with a cleaning mechanism to clean up the residual waste material after stamping.
[0008] The bottom of the outer frame is provided with a transmission mechanism to collect and transport the waste generated during the cleaning process.
[0009] The base is equipped with a storage mechanism on its top so that the collected waste material can be compressed and stored after stamping is completed.
[0010] Preferably, the cleaning mechanism includes a push plate, and a connecting pipe is fixedly connected to the side of the push plate away from the motor. A rotating ring is rotatably connected to the outer wall of the connecting pipe. A gear is fixedly connected to the outer wall of the rotating ring, and a cleaning brush is fixedly connected to the outer wall of the rotating ring.
[0011] Preferably, the transmission mechanism includes a transmission box, and the inner wall of the transmission box has an inner cavity. The side wall of the transmission box has a first sliding groove, and the inner wall of the first sliding groove is slidably connected to a sliding tube. The outer wall of the sliding tube is fixedly connected to a sliding block, and the outer wall of the sliding tube is slidably connected to a connecting ring. The bottom of the transmission box has a discharge port, and the side wall of the transmission box has a second sliding groove.
[0012] Preferably, the bottom of the sliding block slides in contact with the bottom of the inner cavity, the inner wall of the connecting ring is fixedly connected to the outer wall of the connecting tube, and the outer wall of the connecting tube is slidably connected to the inner wall of the second groove.
[0013] Preferably, a lower mold is fixedly installed on the top of the outer frame, and a toothed groove is provided on the side wall of the outer frame. The gear teeth mesh with the inner wall of the toothed groove, and the side wall of the cleaning brush corresponds to the side wall of the lower mold.
[0014] Preferably, the storage mechanism includes a storage box, and a pull rod is slidably connected through the side wall of the storage box. One end of the pull rod is fixedly connected to a pull plate, and a first spring is fixedly connected to the side wall of the pull plate at a position corresponding to the outer wall of the pull rod. The end of the first spring away from the pull plate is fixedly connected to the inner wall of the storage box. Pull blocks are fixedly connected to both ends of the pull plate, and the side walls of the pull blocks slide against the inner wall of the storage box. A second spring is fixedly connected to the top of the inner wall of the storage box, and a pressure plate is fixedly connected to the bottom of the second spring. A protrusion is fixedly connected to the side wall of the pressure plate. A third sliding groove is opened in the inner wall of the storage box, and the outer wall of the protrusion is slidably connected to the inner wall of the third sliding groove. A handle is fixedly connected to the other end of the pull rod, and a feed inlet is opened through the top of the storage box.
[0015] Preferably, the top of the feed inlet corresponds to the bottom of the discharge outlet.
[0016] Preferably, a hydraulic press is fixedly installed on the top of the outer frame, and an upper mold is fixedly connected to the output shaft of the hydraulic press. A third spring is fixedly connected to the top of the upper mold, and a limit cover is fixedly connected to the end of the third spring that is away from the upper mold. The center of the limit cover slides on the outer wall of the output shaft of the hydraulic press.
[0017] Preferably, the bottom of the third spring corresponds to the top of the lower mold.
[0018] Compared with the prior art, the beneficial effects of the present invention are:
[0019] 1. After the stamping process, the push plate is moved by the drive motor, which in turn moves the connecting pipe along with the gear. Since the gear teeth mesh with the inner wall of the tooth groove, the gear rotates as it moves, causing the rotating ring to rotate the cleaning brush. The cleaning brush then moves along with the connecting pipe as it rotates, thus contacting the stamping area of the lower die with the cleaning surface of the brush. This causes the waste material remaining at the stamping area of the lower die to fall into the interior of the transfer box. The simple and convenient one-button operation allows for cleaning of the lower die without stopping the machine, thereby ensuring the quality of subsequent stamping and improving work efficiency.
[0020] 2. While cleaning the lower mold, the connecting pipe drives the connecting ring to move. Then, the sliding pipe slides along the inner wall of the connecting ring, so that the bottom of the sliding block slides against the bottom of the inner cavity, thereby collecting the waste material at the bottom of the inner cavity and then discharging it from the outlet. This eliminates the need for repeated manual cleaning, achieving automatic waste collection and facilitating subsequent centralized processing.
[0021] 3. When transferring waste into the storage box, pulling the handle causes the first spring to slide inside the storage box, moving the waste along with it. Then, the inclined surface of the pull block contacts the pressure plate, causing the pressure plate to rise along the inclined surface of the pull block. After releasing the handle, the pull plate will return to its original position via the first spring, while the pressure plate will return to its original position via the second spring. This process compresses the waste brought by the pull plate, pressing it to the bottom of the pressure plate and reducing the gaps between the waste materials, making it easier for the storage box to store more waste in the future. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0023] Figure 2 This is a cross-sectional view of the overall structure of the present invention;
[0024] Figure 3 This is a cross-sectional view showing the structural connection between the cleaning mechanism and the transmission mechanism of the present invention;
[0025] Figure 4 This is a cross-sectional view of the structural connection of the cleaning mechanism of the present invention;
[0026] Figure 5 This is a cross-sectional view of the transmission mechanism of the present invention;
[0027] Figure 6 This is a cross-sectional view of the storage mechanism of the present invention;
[0028] Figure 7 This is an exploded view of a portion of the cleaning mechanism of the present invention.
[0029] In the diagram: 1. Outer frame; 2. Motor; 3. Cleaning mechanism; 301. Push plate; 302. Connecting pipe; 303. Rotary ring; 304. Gear; 305. Cleaning brush; 4. Transmission mechanism; 401. Transmission box; 402. Inner cavity; 403. First slide groove; 404. Sliding pipe; 405. Sliding block; 406. Connecting ring; 407. Discharge port; 408. Second slide groove; 5. Lower mold; 6. Gear groove; 7. Base; 8. Storage mechanism; 801. Storage box; 802. Pull rod; 803. Pull plate; 804. First spring; 805. Pull block; 806. Second spring; 807. Pressure plate; 808. Protrusion; 809. Third slide groove; 810. Handle; 811. Feed port; 9. Hydraulic press; 10. Upper mold; 11. Third spring; 12. Limit cover. Detailed Implementation
[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0031] Example 1, please refer to Figure 1-7 The present invention provides a stamping and forming equipment for producing thermostat electrode sheets that can be cleaned of waste materials, including an outer frame 1, a motor 2 fixedly installed on the inner wall of the outer frame 1, and a base 7 fixedly connected to the bottom of the outer frame 1.
[0032] The output shaft of motor 2 is equipped with a cleaning mechanism 3 so that the residual waste material after stamping can be cleaned after stamping is completed;
[0033] The bottom of the outer frame 1 is provided with a transmission mechanism 4. Further, the cleaning mechanism 3 includes a push plate 301, and a connecting pipe 302 is fixedly connected to the side of the push plate 301 away from the motor 2. A rotating ring 303 is rotatably connected to the outer wall of the connecting pipe 302. A gear 304 is fixedly connected to the outer wall of the rotating ring 303. A cleaning brush 305 is fixedly connected to the outer wall of the rotating ring 303. The transmission mechanism 4 includes a transmission box 401, and an inner cavity 402 is opened in the inner wall of the transmission box 401. A first sliding groove 403 is opened through the side wall of the transmission box 401. A sliding pipe 404 is slidably connected to the inner wall of the first sliding groove 403. A sliding block 405 is fixedly connected to the outer wall of the sliding pipe 404. A connecting ring 406 is slidably connected to the outer wall of the sliding pipe 404. A discharge port 407 is opened through the bottom of the transmission box 401, and a second sliding groove 408 is opened through the side wall of the transmission box 401.
[0034] In this embodiment, during the stamping and forming of the electrode sheet, the electrode sheet to be processed is first placed on the lower mold 5. Then, the hydraulic press 9 is driven to output. The hydraulic press 9 is fixedly installed on the top of the outer frame 1, and the output shaft of the hydraulic press 9 is fixedly connected to the upper mold 10. The top of the upper mold 10 is fixedly connected to the third spring 11, and the end of the third spring 11 that is away from the upper mold 10 is fixedly connected to the limit cover 12. The center of the limit cover 12 slides on the outer wall of the output shaft of the hydraulic press 9. The bottom of the third spring 11 corresponds to the top of the lower mold 5. The upper mold 10 and the limit cover 12 are driven by the output shaft of the hydraulic press 9. 2. Press down and move to a certain position. At this time, the limiting cover 12 will first contact the surface of the lower mold 5. By pressing down and engaging with the surface of the lower mold 5, the electrode sheet on the lower mold 5 is limited, so that it will not be displaced during the stamping process. At the same time, the limiting cover 12 can also protect the subsequent stamping work and prevent the electrode sheet that is not placed in place from popping out under strong downward pressure, which may cause injury to the operator. After pressing down again, the third spring 11 will be compressed. Then the upper mold 10 will stamp the electrode sheet. After the stamping is completed, the upper mold 10 can be reset by the hydraulic press 9.
[0035] The waste generated during stamping will fall into the interior of the transfer box 401, but a small amount of waste may remain on the side of the lower mold 5. To ensure the quality of subsequent production, it is necessary to clean the stamping area of the lower mold 5. Then, the push plate 301 can be moved by the drive motor 2, so that the connecting pipe 302 moves along with the gear 304. Since the gear teeth of the gear 304 mesh with the inner wall of the tooth groove 6, and the side wall of the cleaning brush 305 corresponds to the side wall of the lower mold 5, the gear 304 will rotate when it moves, so that the rotating ring 303 drives the cleaning brush 305 to rotate. Then, the cleaning brush 305 will move along with the connecting pipe 302 while rotating, so that the cleaning surface of the cleaning brush 305 contacts the stamping area of the lower mold 5, thereby cleaning the waste remaining at the stamping area of the lower mold 5.
[0036] While cleaning, the movement of the connecting pipe 302 can drive the connecting ring 406 to move synchronously. The bottom of the sliding block 405 slides against the bottom of the inner cavity 402. The inner wall of the connecting ring 406 is fixedly connected to the outer wall of the connecting pipe 302, and the outer wall of the connecting pipe 302 is slidably connected to the inner wall of the second slide groove 408. Thus, the connecting ring 406 will drive the sliding pipe 404 to move. Since the sliding pipe 404 also slides in the first slide groove 403, and the first slide groove 403 is inclined, the sliding pipe 404 will drive the sliding block 405 to slide along the bottom of the inner cavity 402 when it moves, thereby pushing the waste material that falls into the bottom of the inner cavity 402. When pushed to the bottom, it will fall into the storage box 801 through the discharge port 407.
[0037] As described above, after the stamping process, the push plate 301 can be moved by the drive motor 2, causing the connecting pipe 302 to move along with the gear 304. Since the gear teeth of the gear 304 mesh with the inner wall of the tooth groove 6, the gear 304 will rotate when it moves, causing the rotating ring 303 to drive the cleaning brush 305 to rotate. Then, the cleaning brush 305 will move along with the connecting pipe 302 while rotating, so that the cleaning surface of the cleaning brush 305 will contact the stamping area of the lower mold 5, causing the waste material remaining at the stamping area of the lower mold 5 to fall into the interior of the transfer box 401. The simple and convenient one-button operation can achieve the cleaning of the lower mold 5 without stopping the machine, thereby ensuring the quality of subsequent stamping and improving work efficiency.
[0038] While cleaning the lower mold 5, the connecting pipe 302 drives the connecting ring 406 to move. Then, the sliding pipe 404 slides along the inner wall of the connecting ring 406, so that the bottom of the sliding block 405 slides against the bottom of the inner cavity 402, thereby collecting the waste material at the bottom of the inner cavity 402 and then discharging it from the discharge port 407. This eliminates the need for repeated manual cleaning, achieving automatic collection of waste material and facilitating subsequent centralized processing.
[0039] In embodiment two, based on the above embodiment, a storage mechanism 8 is provided on the top of the base 7. Further, the storage mechanism 8 includes a storage box 801, and a pull rod 802 is slidably connected through the side wall of the storage box 801. One end of the pull rod 802 is fixedly connected to a pull plate 803, and a first spring 804 is fixedly connected to the side wall of the pull plate 803 at a position corresponding to the outer wall of the pull rod 802. The end of the first spring 804 away from the pull plate 803 is fixedly connected to the inner wall of the storage box 801. Both ends of the pull plate 803 are fixedly connected to pull blocks 805, and the side of the pull block 805... The wall is in contact with the inner wall of the storage box 801 and slides. A second spring 806 is fixedly connected to the top of the inner wall of the storage box 801, and a pressure plate 807 is fixedly connected to the bottom of the second spring 806. A protrusion 808 is fixedly connected to the side wall of the pressure plate 807. A third sliding groove 809 is opened on the inner wall of the storage box 801. The outer wall of the protrusion 808 is slidably connected to the inner wall of the third sliding groove 809. A handle 810 is fixedly connected to the other end of the pull rod 802. A feed inlet 811 is opened through the top of the storage box 801, and the top of the feed inlet 811 corresponds to the bottom of the discharge outlet 407.
[0040] In this embodiment, waste can be collected and stored by setting up a storage mechanism 8. When a certain amount is stored, the handle 810 is pulled to drive the pull plate 803 to slide inside the storage box 801 via the pull rod 802. At the same time, the pull plate 803 can move the waste. After moving to a certain position, the inclined surface of the pull block 805 will contact the inclined angle of the pressure plate 807, and then the pressure plate 807 will be lifted along the inclined surface of the pull block 805. At the same time, the protrusion 808 will slide on the inner wall of the third slide groove 809 to keep the pressure plate 807 balanced. After that, the pull plate 803 moves the waste to the bottom of the pressure plate 807. Then the handle 810 is released. The elastic force of the first spring 804 can reset the pull plate 803 to the middle position inside the storage box 801. During this process, while the pull plate 803 is separated from the pressure plate 807, the pressure plate 807 will slide downward by the elastic force of the second spring 806, and then the waste will be squeezed and compressed at the bottom of the pressure plate 807.
[0041] As described above, when waste is transferred into storage box 801, pulling handle 810 causes the first spring 804 to slide inside storage box 801, moving the waste along with it. Then, the inclined surface of pull block 805 contacts pressure plate 807, causing pressure plate 807 to be lifted along the inclined surface of pull block 805. After releasing handle 810, pull plate 803 is reset by the first spring 804, while pressure plate 807 is reset downward by the second spring 806. This squeezes the waste brought by pull plate 803, pressing it to the bottom of pressure plate 807 and reducing the gaps between the waste, making it easier for storage box 801 to store more waste in the future.
[0042] Working principle: First, during the stamping and forming of the electrode sheet, the electrode sheet to be processed is placed on the lower mold 5. Then, the hydraulic press 9 is driven to output. The hydraulic press 9 is fixedly installed on the top of the outer frame 1, and the output shaft of the hydraulic press 9 is fixedly connected to the upper mold 10. A third spring 11 is fixedly connected to the top of the upper mold 10, and a limit cover 12 is fixedly connected to the end of the third spring 11 that is away from the upper mold 10. The center of the limit cover 12 slides on the outer wall of the output shaft of the hydraulic press 9. The bottom of the third spring 11 corresponds to the top of the lower mold 5. The output shaft of the hydraulic press 9 drives the upper mold 10 and the limit cover 12 to press down. After moving to a certain position, the limit cover 12 will first contact the lower mold 5. The surface of mold 5 is pressed down and engaged with the surface of lower mold 5 to limit the electrode sheet on lower mold 5, preventing it from shifting during the stamping process. At the same time, the limiting cover 12 also protects the subsequent stamping process, preventing the risk of improperly placed electrode sheets popping out under strong downward pressure and injuring the operator. After pressing down again, the third spring 11 will be compressed, and then upper mold 10 will stamp the electrode sheet. After stamping is completed, upper mold 10 can be reset by hydraulic press 9. The simple and convenient one-button operation can clean lower mold 5 without stopping the machine, thus ensuring the quality of subsequent stamping and improving work efficiency.
[0043] The waste generated during stamping will fall into the interior of the transfer box 401, but a small amount of waste may remain on the side of the lower mold 5. To ensure the quality of subsequent production, it is necessary to clean the stamping area of the lower mold 5. Then, the push plate 301 can be moved by the drive motor 2, so that the connecting pipe 302 moves along with the gear 304. Since the gear teeth of the gear 304 mesh with the inner wall of the tooth groove 6, and the side wall of the cleaning brush 305 corresponds to the side wall of the lower mold 5, the gear 304 will rotate when it moves, so that the rotating ring 303 drives the cleaning brush 305 to rotate. Then, the cleaning brush 305 will move along with the connecting pipe 302 while rotating, so that the cleaning surface of the cleaning brush 305 contacts the stamping area of the lower mold 5, thereby cleaning the waste remaining at the stamping area of the lower mold 5.
[0044] While cleaning, the movement of the connecting pipe 302 can drive the connecting ring 406 to move synchronously. The bottom of the sliding block 405 slides against the bottom of the inner cavity 402. The inner wall of the connecting ring 406 is fixedly connected to the outer wall of the connecting pipe 302, and the outer wall of the connecting pipe 302 is slidably connected to the inner wall of the second slide groove 408. Thus, the connecting ring 406 will drive the sliding pipe 404 to move. Since the sliding pipe 404 also slides in the first slide groove 403, and the first slide groove 403 is inclined, the sliding pipe 404 will drive the sliding block 405 to slide along the bottom of the inner cavity 402 when it moves, thereby pushing the waste material that falls into the bottom of the inner cavity 402. When pushed to the bottom, it will fall into the storage box 801 through the discharge port 407. There is no need for repeated manual cleaning, realizing automatic collection of waste material, which is convenient for subsequent centralized processing.
[0045] Next, the waste material can be collected and stored by setting up the storage mechanism 8. When a certain amount is stored, pulling the handle 810 will cause the pull plate 803 to slide inside the storage box 801 via the pull rod 802. At the same time, the pull plate 803 can move the waste material. After moving to a certain position, the inclined surface of the pull block 805 will contact the inclined angle of the pressure plate 807, and then the pressure plate 807 will be lifted along the inclined surface of the pull block 805. At the same time, the protrusion 808 will slide on the inner wall of the third slide groove 809 to keep the pressure plate 807 balanced. After that, the pull plate 803 will move the waste material. After moving to the bottom of the pressure plate 807, the handle 810 is released. The spring force of the first spring 804 can reset the pull plate 803 to the middle position inside the storage box 801. During this process, as the pull plate 803 disengages from the pressure plate 807, the pressure plate 807 slides downward by the spring force of the second spring 806, thereby squeezing the waste material brought by the pull plate 803. By squeezing and compressing the waste material at the bottom of the pressure plate 807, the waste material is squeezed at the bottom of the pressure plate 807, and the gaps between the waste materials are reduced, making it easier for the storage box 801 to store more waste material in the future.
[0046] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A stamping and forming equipment for producing thermostat electrode sheets with waste disposal capability, comprising an outer frame (1), characterized in that: A motor (2) is fixedly installed on the inner wall of the outer frame (1), and a base (7) is fixedly connected to the bottom of the outer frame (1). The output shaft of the motor (2) is equipped with a cleaning mechanism (3) to clean the residual waste material after stamping. The bottom of the outer frame (1) is provided with a transmission mechanism (4) to collect and transport the waste generated during the cleaning process; The top of the base (7) is provided with a storage mechanism (8) to compress and store the collected waste after stamping is completed; The cleaning mechanism (3) includes a push plate (301), and a connecting pipe (302) is fixedly connected to the side of the push plate (301) away from the motor (2), and a rotating ring (303) is rotatably connected to the outer wall of the connecting pipe (302), a gear (304) is fixedly connected to the outer wall of the rotating ring (303), and a cleaning brush (305) is fixedly connected to the outer wall of the rotating ring (303). The transmission mechanism (4) includes a transmission box (401), and the inner wall of the transmission box (401) is provided with an inner cavity (402). The side wall of the transmission box (401) is provided with a first sliding groove (403), and the inner wall of the first sliding groove (403) is slidably connected with a sliding tube (404). The outer wall of the sliding tube (404) is fixedly connected with a sliding block (405), and the outer wall of the sliding tube (404) is slidably connected with a connecting ring (406). The bottom of the transmission box (401) is provided with a discharge port (407), and the side wall of the transmission box (401) is provided with a second sliding groove (408). The bottom of the sliding block (405) slides against the bottom of the inner cavity (402), the inner wall of the connecting ring (406) is fixedly connected to the outer wall of the connecting pipe (302), and the outer wall of the connecting pipe (302) is slidably connected to the inner wall of the second groove (408). The top of the outer frame (1) is fixedly installed with a lower mold (5), and the side wall of the outer frame (1) is provided with a toothed groove (6). The teeth of the gear (304) mesh with the inner wall of the toothed groove (6), and the side wall of the cleaning brush (305) corresponds to the side wall of the lower mold (5).
2. The stamping and forming equipment for producing thermostat electrode sheets with waste disposal capability according to claim 1, characterized in that, The storage mechanism (8) includes a storage box (801), and a pull rod (802) is slidably connected through the side wall of the storage box (801). One end of the pull rod (802) is fixedly connected to a pull plate (803), and a first spring (804) is fixedly connected to the side wall of the pull plate (803) at a position corresponding to the outer wall of the pull rod (802). The end of the first spring (804) that is away from the pull plate (803) is fixedly connected to the inner wall of the storage box (801). Both ends of the pull plate (803) are fixedly connected to pull blocks (805), and the side wall of the pull block (805) is connected to the storage box. The inner wall of (801) slides against each other. A second spring (806) is fixedly connected to the top of the inner wall of the storage box (801), and a pressure plate (807) is fixedly connected to the bottom of the second spring (806). A protrusion (808) is fixedly connected to the side wall of the pressure plate (807). A third sliding groove (809) is opened on the inner wall of the storage box (801). The outer wall of the protrusion (808) is slidably connected to the inner wall of the third sliding groove (809). A handle (810) is fixedly connected to the other end of the pull rod (802). A feed inlet (811) is opened through the top of the storage box (801).
3. The stamping and forming equipment for producing thermostat electrode sheets with waste disposal according to claim 2, characterized in that, The top of the feed inlet (811) corresponds to the bottom of the discharge outlet (407).
4. The stamping and forming equipment for producing thermostat electrode sheets with waste disposal capability according to claim 1, characterized in that, A hydraulic press (9) is fixedly installed on the top of the outer frame (1), and the output shaft of the hydraulic press (9) is fixedly connected to an upper mold (10). A third spring (11) is fixedly connected to the top of the upper mold (10), and a limit cover (12) is fixedly connected to the end of the third spring (11) that is far away from the upper mold (10). The center of the limit cover (12) slides on the outer wall of the output shaft of the hydraulic press (9).
5. The stamping and forming equipment for producing thermostat electrode sheets with waste disposal according to claim 4, characterized in that, The bottom of the third spring (11) corresponds to the top of the lower mold (5).