Stamping die raw material piece circulation switching device
By designing a cycle switching device for raw material parts of stamping mold, the problem of insufficient versatility of the existing automatic loading robot arm system is solved, and the cycle switching and processing efficiency of raw material parts are improved, and the needs of different production environments are adapted.
Patent Information
- Application Number
- CN202422104751.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-29
AI Technical Summary
The existing automatic loading robot arm system is not versatile enough, making it difficult to quickly adapt to the adjustment and upgrade of different production environments and production lines.
A circular switching device for raw material parts of stamping mold is designed, including support components, push components, feeding components, stamping platforms, limiting components and driving components. The raw materials are stacked and stored and pushed down one by one to the stamping platform to realize circular switching of raw materials.
It effectively improves processing efficiency, reduces human error rate, and can adapt to the needs of different production environments, improving the universality and flexibility of the system.
Smart Images

Figure CN223011729U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of stamping dies, in particular to a device for circularly switching raw material parts of a stamping die. Background Art
[0002] A stamping die, as the core process equipment in the field of cold stamping processing, focuses on applying pressure to metal or non-metal materials by using a die on a press at room temperature, so as to cause the materials to separate or plastically deform, thereby accurately forming into required parts or semi-finished products. This process is not only efficient but also widely used in the manufacturing industry.
[0003] In the operation process of a stamping die, the feeding link of raw material parts is crucial. At present, there are mainly two feeding methods: manual and automatic. Manual feeding relies on operators to place raw materials into the die piece by piece. Although it is flexible, its efficiency is limited and it is easily affected by human factors. In contrast, an automatic feeding system integrates automation equipment, such as a robotic arm, to automatically grab raw material parts from a feeding cart and accurately place them on the stamping platform, greatly improving production efficiency and product quality, and significantly reducing the human error rate at the same time.
[0004] However, the existing automatic feeding robotic arm systems often face the challenge of insufficient versatility. These robotic arms are usually designed with high customization to meet the requirements of specific machine tools, dies and raw material sizes. Although this design ensures the accuracy and stability of the operation, it also means that once deployed in a certain production line or specific task, the difficulty and cost of adjusting it to other production environments will increase significantly. Therefore, in a rapidly changing production environment, the versatility of the robotic arm is limited and it is difficult to quickly adapt to the adjustment and upgrade of the production line. Summary of the Utility Model
[0005] The utility model aims to solve at least one of the technical problems in the related technologies to a certain extent.
[0006] For this purpose, the purpose of the utility model is to provide a device for circularly switching raw material parts of a stamping die, in which the raw material parts are stacked and stored, and slide down one by one and are pushed onto the stamping platform, and the raw material parts are circularly switched, effectively improving the processing efficiency.
[0007] To achieve the above object, the present utility model provides a cyclic switching device for raw material parts of a stamping die, which includes a support assembly, a pushing assembly, a feeding assembly, a stamping platform, a limiting component, and a driving component. Among them, the support assembly includes a support platform, a limiting groove, and a baffle. The limiting groove is formed on the support platform; there are two groups of baffles, and the two groups of baffles are symmetrically arranged on the support platform; the pushing assembly is movably arranged on the support platform, and the pushing assembly includes a moving frame, a material blocking plate, a fastening frame, and a top block. The moving frame is movably arranged on the support platform; the material blocking plate is arranged on the moving frame; the fastening frame is arranged on the moving frame; the top block is arranged on the moving frame; the feeding assembly is arranged on the support platform; the stamping platform is arranged on the support platform; the limiting component is arranged on the baffle; the driving component is arranged on the support platform, and the driving component is connected to the moving frame.
[0008] For the cyclic switching device for raw material parts of the stamping die of the present utility model, the raw material parts are stacked in the outer box body and slide out one by one and fall into the support platform and the moving frame. The moving frame moves to drive the raw material parts to slide onto the stamping platform, and the subsequent cyclically falling raw material parts complete the material pushing during feeding, realizing the cyclic switching of the raw material parts, thereby effectively improving the processing efficiency.
[0009] In addition, the cyclic switching device for raw material parts of the stamping die proposed according to the above application may also have the following additional technical features:
[0010] Specifically, the feeding assembly includes an outer box body, a feeding mechanism, and a transmission mechanism. The feeding mechanism is arranged on the bottom wall of the inner cavity of the outer box body; there are two groups of transmission mechanisms, and the two groups of transmission mechanisms are respectively arranged on the inner wall of the outer box body.
[0011] Specifically, the feeding mechanism includes a bottom plate and a plurality of balls. The bottom plate is arranged on the bottom wall of the inner cavity of the outer box body; there are multiple groups of balls, and the multiple groups of balls are rotatably arranged on the bottom plate.
[0012] Specifically, the transmission mechanism includes an outer frame and a transmission shaft. The outer frame is arranged on the inner wall of the outer box body; the transmission shaft is rotatably arranged on the outer frame.
[0013] Specifically, the driving component includes a driving part, a fixing block, a fastening block, and a connecting component. The driving part is arranged on the bottom wall of the support platform; the fixing block is arranged on the support platform; the fastening block is arranged on the driving part; the connecting component is arranged on the fastening block, and the connecting component is connected to the moving frame.
[0014] Specifically, the bottom plate is an inclined plate, and the bottom wall of the bottom plate and the top wall of the baffle are located on the same horizontal plane.
[0015] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, wherein:
[0017] Figure 1 is a schematic structural diagram of the present utility model;
[0018] Figure 2 is a schematic diagram of the internal structure of the outer box of the present utility model;
[0019] Figure 3 is a schematic structural diagram of the feeding assembly of the present utility model;
[0020] Figure 4 is a schematic structural diagram of the driving assembly of the present utility model.
[0021] As shown in the figure: 10, support assembly; 101, support platform; 102, limit groove; 103, baffle; 20, pushing assembly; 201, moving frame; 202, material blocking plate; 203, fastening frame; 204, top block; 30, feeding assembly; 301, outer box; 302, feeding mechanism; 3021, bottom plate; 3022, ball; 303, transmission mechanism; 3031, outer frame; 3032, transmission shaft; 40, stamping platform; 50, limiting component; 60, driving assembly; 601, driving component; 602, fixed block; 603, fastening block; 604, connecting component. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the accompanying drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as limiting the present utility model. On the contrary, the embodiments of the present utility model include all changes, modifications, and equivalents that fall within the spirit and scope of the appended claims.
[0023] The stamping die raw material part circulation switching device of the embodiments of the present utility model will be described below in conjunction with the accompanying drawings.
[0024] As Figures 1-4As shown in the figure, the cyclic switching device for raw material parts of the stamping die according to the embodiment of the present utility model includes a support assembly 10, a pushing assembly 20, a feeding assembly 30, a stamping platform 40, a limiting member 50, and a driving assembly 60.
[0025] Among them, the support assembly 10 includes a support platform 101, a limiting groove 102, and a baffle 103.
[0026] Among them, the limiting groove 102 is opened on the support platform 101, and there are two groups of baffles 103, and the two groups of baffles 103 are symmetrically arranged on the support platform 101.
[0027] It should be noted that four groups of support legs are provided on the bottom wall of the support platform 101, and the support platform 101 is arranged on a horizontal construction surface through the support legs. The limiting groove 102 is a through groove and penetrates the support platform 101, and the baffle 103 is arranged on both sides of the support platform 101, so as to limit the pushing assembly 20 through the baffle 103.
[0028] The pushing assembly 20 is movably arranged on the support platform 101, and the pushing assembly 20 includes a moving frame 201, a material blocking plate 202, a fastening frame 203, and a top block 204.
[0029] Among them, the moving frame 201 is movably arranged on the support platform 101, the material blocking plate 202 is arranged on the moving frame 201, and the fastening frame 203 is arranged on the moving frame 201. The top block 204 is arranged on the moving frame 201.
[0030] It should be noted that the top wall of the support platform 101 is a smooth surface, and the moving frame 201 moves smoothly on the support platform 101. And the moving frame 201 is limited by the contact between the top block 204 and the limiting member 50.
[0031] The feeding assembly 30 is arranged on the support platform 101, and the stamping platform 40 is arranged on the support platform 101. The limiting member 50 is arranged on the baffle 103, the driving assembly 60 is arranged on the support platform 101, and the driving assembly 60 is connected to the moving frame 201.
[0032] It should be noted that the raw material parts 70 to be stamped are placed in the feeding assembly 30 and slide down onto the support platform 101 through the feeding assembly 30. When the moving frame 201 moves, it pushes the sliding raw materials to move onto the stamping platform 40. When the driving assembly 60 operates, it drives the moving frame 201 to move horizontally on the support platform 101.
[0033] In one embodiment of the present utility model, as Figure 2 shown, the feeding assembly 30 includes an outer box body 301, a feeding mechanism 302, and a transmission mechanism 303.
[0034] Among them, the feeding mechanism 302 is arranged on the inner cavity bottom wall of the outer box body 301, and there are two sets of transmission mechanisms 303, and the two sets of transmission mechanisms 303 are respectively arranged on the inner wall of the outer box body 301.
[0035] It should be noted that the feeding mechanism 302 is used to convey the raw material parts 70 stacked in the outer box body 301, so that the raw material parts 70 slide onto the support platform 101. The transmission mechanism 303 is used to transmit the raw material parts 70 stacked in the outer box body 301, so that the raw material parts 70 slide down smoothly.
[0036] In an embodiment of the present invention, as Figure 2 shown, the feeding mechanism 302 includes a bottom plate 3021 and balls 3022.
[0037] Among them, the bottom plate 3021 is arranged on the inner cavity bottom wall of the outer box body 301, and there are multiple groups of balls 3022, and the multiple groups of balls 3022 are rotatably arranged on the bottom plate 3021.
[0038] It should be noted that the balls 3022 on the bottom plate 3021 are used to convey the raw material parts 70, and the resistance is smaller when the raw material parts 70 slide.
[0039] In an embodiment of the present invention, as Figure 2 shown, the transmission mechanism 303 includes an outer frame 3031 and a transmission shaft 3032.
[0040] Among them, the outer frame 3031 is arranged on the inner wall of the outer box body 301, and the transmission shaft 3032 is rotatably arranged on the outer frame 3031.
[0041] It should be noted that in this embodiment, the transmission shaft 3032 is rotatably arranged on the outer frame 3031, and the raw material parts 70 move while adhering to the transmission shaft 3032, and then slide down stably.
[0042] In an embodiment of the present invention, as Figure 4 shown, the driving assembly 60 includes a driving part 601, a fixing block 602, a fastening block 603 and a connecting part 604.
[0043] Among them, the driving part 601 is arranged on the bottom wall of the support platform 101, the fixing block 602 is arranged on the support platform 101, the fastening block 603 is arranged on the driving part 601, the connecting part 604 is arranged on the fastening block 603, and the connecting part 604 is connected to the moving frame 201.
[0044] It should be noted that the driving component 601 is a hydraulic cylinder, which is operated by controlling the switch and the power supply, driving the fastening block 603 to slide in the limit groove 102, and connected to the movable frame 201 through the connecting component 604, thereby driving the movable frame 201 to move horizontally and adjust on the supporting platform 101.
[0045] In one embodiment of the present invention, Figure 2 and Figure 3 As shown, the bottom plate 3021 is an inclined plate, and the bottom wall of the bottom plate 3021 and the top wall of the baffle 103 are located in the same horizontal plane.
[0046] It should be noted that the bottom plate 3021 is configured as an inclined plate to facilitate the sliding of the raw material piece 70 and ensure that the raw material piece 70 falls onto the supporting platform 101 when sliding.
[0047] Specifically, the steps for implementing the cyclic switching of the raw material parts on the stamping die are as follows: the raw material parts 70 are stored in the outer box body 301, and the raw material parts 70 slide down steadily through the transmission shaft 3032, and slide out of the outer box body 301 through the ball 3022 on the bottom plate 3021 and fall on the support platform 101, and fall into the inner side of the mobile frame 201. Then, the Yunqing driving component 601 drives the fastening block 603 to move, and the connecting component 604 drives the mobile frame 201 to move horizontally on the support platform 101, thereby driving the raw material parts 70 to move to the stamping platform 40, and when moving, the top block 204 and the limiting component 50 are in conflict, and then the moving distance of the limiting mobile frame 201 is limited to ensure that the raw material parts 70 are limited and parked on the top of the stamping platform 40. During operation, the material blocking plate 202 will block the raw material parts 70 that subsequently slide down from the outer box body 301. Then, the cyclic switching of the raw material parts 70 is completed, and the efficiency of stamping the raw material parts 70 is effectively improved.
[0048] In summary, the stamping die raw material circulation switching device of the embodiment of the utility model piles up the raw materials in the outer box body and slides out one by one and falls into the supporting platform and the movable frame. The movement of the movable frame drives the raw materials to slide onto the stamping platform, and the raw materials that fall through the subsequent cycle complete the top material during loading, thereby realizing the circulation switching of the raw materials, thereby effectively improving the processing efficiency.
[0049] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations of the present invention. Ordinary technicians in this field can change, modify, replace and deform the above embodiments within the scope of the present invention.
Claims
1. A stamping die raw material circulation switching device, characterized in that: It comprises a supporting assembly (10), a pushing assembly (20), a feeding assembly (30), a stamping platform (40), a limiting component (50) and a driving assembly (60), wherein: The support assembly (10) comprises a support platform (101), a limiting groove (102) and a baffle (103), wherein: The limiting groove (102) is provided on the supporting platform (101); The baffles (103) are in two groups, and the two groups of baffles (103) are symmetrically arranged on the supporting platform (101); The pushing assembly (20) is movably arranged on the supporting platform (101), and the pushing assembly (20) comprises a moving frame (201), a material blocking plate (202), a fastening frame (203) and a top block (204), wherein: The movable frame (201) is movably arranged on the supporting platform (101); The material blocking plate (202) is arranged on the movable frame (201); The fastening frame (203) is arranged on the moving frame (201); The top block (204) is arranged on the movable frame (201); The feeding assembly (30) is arranged on the supporting platform (101); The stamping platform (40) is arranged on the supporting platform (101); The limiting component (50) is arranged on the baffle (103); The driving assembly (60) is arranged on the supporting platform (101), and the driving assembly (60) is connected to the moving frame (201).
2. The stamping die raw material circulation switching device according to claim 1, characterized in that: The feeding assembly (30) comprises an outer box (301), a feeding mechanism (302) and a transmission mechanism (303), wherein: The feeding mechanism (302) is arranged on the bottom wall of the inner cavity of the outer box body (301); The transmission mechanisms (303) are divided into two groups, and the two groups of transmission mechanisms (303) are respectively arranged on the inner wall of the outer box body (301).
3. The stamping die raw material circulation switching device according to claim 2, characterized in that: The feeding mechanism (302) comprises a bottom plate (3021) and a ball bearing (3022), wherein: The bottom plate (3021) is arranged on the bottom wall of the inner cavity of the outer box body (301); The balls (3022) are in multiple groups, and the balls (3022) are rotatably arranged on the bottom plate (3021).
4. The stamping die raw material circulation switching device according to claim 2, characterized in that: The transmission mechanism (303) comprises an outer frame (3031) and a transmission shaft (3032), wherein: The outer frame (3031) is arranged on the inner wall of the outer box body (301); The transmission shaft (3032) is rotatably disposed on the outer frame (3031).
5. The stamping die raw material circulation switching device according to claim 1, characterized in that: The driving assembly (60) comprises a driving component (601), a fixing block (602), a fastening block (603) and a connecting component (604), wherein: The driving component (601) is arranged on the bottom wall of the supporting platform (101); The fixing block (602) is arranged on the supporting platform (101); The fastening block (603) is arranged on the driving component (601); The connecting component (604) is arranged on the fastening block (603), and the connecting component (604) is connected to the moving frame (201).
6. The stamping die raw material circulation switching device according to claim 3, characterized in that: The bottom plate (3021) is an inclined plate, and the bottom wall of the bottom plate (3021) and the top wall of the baffle (103) are located in the same horizontal plane.