A mold processing chip removing mechanism

CN224737972UActive Publication Date: 2026-09-11WUHAN YINYU PRECISION CASTINGS CO LTD
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Patent Information

Application Number
CN202522036667.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-09-11
Estimated Expiration
2035-09-22

AI Technical Summary

Technical Problem

[0005]为了克服现有技术的上述缺陷,本实用新型提供一种模具加工清屑机构,以解决在现有技术中清理推板因磨损导致其与加工台表面的贴合度降低,致使清理效率显著下降,最终影响清屑机构的整体性能问题

Benefits of technology

[0014]上述方案中,在夹板完成复位动作后,该夹板带动下方设置的清理刷执行废屑清理操作,在此过程中,通过补偿组件对清理刷顶部施加作用力,促使清理刷底面与台面紧密贴合,以此保障清理刷在整个作业过程中始终与台面保持良好贴合状态,有效提升废屑清理效率,从而增强清屑机构的整体使用效能。

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Abstract

This utility model relates to the field of mold processing technology, specifically a mold processing chip removal mechanism, including a grinding equipment body and a blocking frame. Electric push rods are installed on the upper left and right sides of the grinding equipment body. A plug-in block is installed at the output end of each electric push rod. A clamping plate is installed on the outer side of the plug-in block. A cleaning brush is installed at the lower part of the clamping plate. Storage grooves are opened on the left and right sides of the inner wall of the blocking frame, and a moving groove is opened at the lower part of the clamping plate. After the clamping plate completes its reset action, it drives the cleaning brush below to perform chip removal. During this process, a compensating component applies force to the top of the cleaning brush, causing the bottom surface of the cleaning brush to fit tightly against the table surface. This ensures that the cleaning brush maintains a good fit with the table surface throughout the entire operation, effectively improving chip removal efficiency and enhancing the overall performance of the chip removal mechanism.
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Description

Technical Field

[0001] This utility model relates to the field of mold processing technology, and more specifically, to a chip removal mechanism for mold processing. Background Technology

[0002] With the rapid development of modern manufacturing, molds, as basic process equipment in industrial production, directly affect the molding effect and service life of the final product through their processing accuracy and surface quality. In the process of mold manufacturing and maintenance, especially in the production of precision molds, a large amount of metal shavings, burrs and oxide scale will inevitably be generated. If these residues are not removed in time and effectively, they will not only reduce the assembly accuracy and service life of the mold, but also cause product defects in subsequent injection molding, stamping and other processes, and even cause equipment failure.

[0003] A search revealed a prior art chip removal mechanism for mold processing, patent publication number CN222430420U. The specification states that during mold processing and polishing, the waste chips generated are blocked by side baffles, a first baffle, a second baffle, a front baffle, a mounting plate, and a top plate, preventing the chips from splashing everywhere. An electric telescopic rod and a cleaning push plate facilitate pushing the chips on the polishing table to the left and right, pushing them into the chip collection box. This not only cleans the chips but also facilitates their collection.

[0004] However, in actual use, although the above solution can achieve push-type cleaning of waste chips on the grinding table and the waste can be collected by the collection box, in the long-term use, the cleaning push plate wears down, which reduces its adhesion to the surface of the processing table, resulting in a significant decrease in cleaning efficiency and ultimately affecting the overall performance of the chip removal mechanism. Utility Model Content

[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a chip removal mechanism for mold processing, so as to solve the problem that the cleaning push plate is worn down due to reduced adhesion between itself and the surface of the processing table, resulting in a significant decrease in cleaning efficiency and ultimately affecting the overall performance of the chip removal mechanism.

[0006] To solve the above technical problems, this utility model provides the following technical solution: a chip removal mechanism for mold processing, including a grinding equipment body and a blocking frame. Electric push rods are installed on the upper left and right sides of the grinding equipment body. A plug-in block is installed at the output end of the electric push rod. A clamping plate is installed on the outer side of the plug-in block. A cleaning brush is installed at the lower part of the clamping plate. Storage grooves are opened on the left and right sides of the inner wall of the blocking frame.

[0007] The clamping plate has a movable groove at its lower part, and a movable plate is slidably connected to the lower side of the inner wall of the movable groove. Multiple elastic elements are installed on the top of the movable plate.

[0008] The bottom of the movable plate is installed between the cleaning brush and the movable plate, the top ends of the multiple elastic elements are installed on the inner top wall of the movable groove, and the upper part of the cleaning brush penetrates the bottom wall of the movable groove.

[0009] The left and right clamps are provided with sliding grooves on opposite sides, and a sliding plate is slidably connected to the lower part of the inner wall of the sliding groove. An elastic element is installed on one side of the sliding plate and an insert plate is installed on the other side. Insertion slots are provided on the lower part of opposite sides of the left and right clamps, and insertion holes are provided on the top of the insertion block.

[0010] The top of the second elastic element is installed on the inner top wall of the slide groove, and the adjacent sides of the left and right plug blocks are inserted into the inner wall of the plug groove.

[0011] The bottom of the insert plate penetrates the inner top wall of the insertion slot and is inserted into the inner wall of the insertion hole.

[0012] The bottom of the cleaning brush is attached to the upper surface of the grinding equipment body, the opposite sides of the left and right clamps are inserted into the inner wall of the storage groove, and the near ends of the left and right electric push rods pass through the blocking frame.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] In the above scheme, after the clamping plate completes the reset action, the clamping plate drives the cleaning brush set below to perform the waste cleaning operation. During this process, the compensation component applies force to the top of the cleaning brush, causing the bottom surface of the cleaning brush to fit tightly with the table surface. This ensures that the cleaning brush maintains a good fit with the table surface throughout the entire operation, effectively improving the waste cleaning efficiency and thus enhancing the overall performance of the waste cleaning mechanism. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the clamping plate structure of this utility model;

[0017] Figure 3 This is a schematic diagram of the storage slot structure of this utility model;

[0018] Figure 4 This is a front view of the clamping plate of this utility model;

[0019] Figure 5 for Figure 4 Cross-sectional view of the structure at point AA;

[0020] Figure 6 This is a right view of the right side clamp of this utility model;

[0021] Figure 7 for Figure 6 Cross-sectional view of the structure at point BB;

[0022] Figure 8 This is a schematic diagram of the socket structure of this utility model.

[0023] [Figure Labels]

[0024] 1. Grinding equipment body; 2. Blocking frame; 3. Clamping plate; 4. Electric push rod; 5. Storage slot; 6. Insertion slot; 7. Moving slot; 8. Elastic component one; 9. Moving plate; 10. Cleaning brush; 11. Slide groove; 12. Elastic component two; 13. Slide plate; 14. Insertion plate; 15. Insertion block; 16. Insertion hole. Detailed Implementation

[0025] To make the technical problems, technical solutions and advantages of this utility model clearer, a detailed description will be given below in conjunction with the accompanying drawings and specific embodiments.

[0026] Example 1: Please refer to Figures 1 to 8 This utility model provides a technical solution: a chip removal mechanism for mold processing, including a grinding equipment body 1 and a blocking frame 2. Electric push rods 4 are installed on the upper left and right sides of the grinding equipment body 1. A plug-in block 15 is installed at the output end of the electric push rod 4. The plug-in block 15 and the clamping plate 3 are integrally constructed. For ease of subsequent maintenance, they are designed as a single unit. The clamping plate 3 is installed on the outer side of the plug-in block 15, and a cleaning brush 10 is installed at the lower part of the clamping plate 3. Storage grooves 5 are provided on both the left and right sides of the inner wall of the blocking frame 2. The bottom of the cleaning brush 10 is in contact with the upper surface of the grinding equipment body 1, thereby pushing the cleaning brush 10 to perform chip removal on the table surface of the grinding equipment body 1. The opposite sides of the clamping plates 3 on both sides are inserted into the inner wall of the storage grooves 5, facilitating the storage of the clamping plates 3 to one side of the blocking frame 2. The near ends of the electric push rods 4 on both sides penetrate the blocking frame 2, thereby using the electric push rods 4 to push the clamping plates 3 on both sides to clamp the mold.

[0027] When in use, the electric push rod 4 is used to push the two clamping plates 3 on both sides to clamp the mold for grinding operation. After grinding, the two clamping plates 3 are reset and the cleaning brush 10 is driven to clean the waste on the table and push it to both sides through the chip discharge hole into the collection box. When not in use, one side of the clamping plate 3 can be stored in the inner wall of the storage slot 5 for subsequent use.

[0028] Example 2: Based on Example 1, in order to ensure that the bottom of the cleaning brush 10 can remain in contact with the countertop, a movable groove 7 is provided at the lower part of the clamping plate 3. A movable plate 9 is slidably connected to the lower side of the inner wall of the movable groove 7. Multiple elastic elements 8 are installed on the top of the movable plate 9. The bottom of the movable plate 9 is installed between the cleaning brush 10 and the bottom of the multiple elastic elements 8 are installed on the inner top wall of the movable groove 7. The upper part of the cleaning brush 10 penetrates the bottom wall of the movable groove 7, thereby using the elastic force of the multiple elastic elements 8 to push the movable plate 9 down and drive the cleaning brush 10 to remain in contact with the countertop.

[0029] During the movement of the clamping plate 3, a moving groove 7 is provided at its lower part, and multiple elastic elements 8 are installed on the inner wall of the moving groove 7. The elastic force of the elastic elements 8 is used to push the moving plate 9 down along the inner wall of the moving groove 7, and to drive the cleaning brush 10 to always keep in contact with the table surface of the grinding equipment body 1, thereby improving the chip removal effect.

[0030] Example 3: Based on Example 2, in order to facilitate the removal of clamping plates 3 for maintenance and replacement, sliding grooves 11 are provided on the opposite sides of the left and right clamping plates 3. A sliding plate 13 is slidably connected to the lower part of the inner wall of the sliding groove 11. An elastic element 12 is installed on one side of the sliding plate 13, and an insert plate 14 is installed on the other side. Insertion grooves 6 are provided on the lower part of the opposite sides of the left and right clamping plates 3. Insertion holes 16 are provided on the top of the insertion block 15. The top of the elastic element 12 is installed on the inner top wall of the sliding groove 11. The adjacent sides of the left and right insertion blocks 15 are inserted into the inner wall of the insertion groove 6, so that the elastic force of the elastic element 12 pushes the bottom of the insert plate 14 downward to keep it in the insertion state with the insertion hole 16. The bottom of the insert plate 14 penetrates the inner top wall of the insertion groove 6 and is inserted into the inner wall of the insertion hole 16, thereby locking the insertion block 15 and the clamping plate 3 for subsequent maintenance or replacement.

[0031] Activate the electric push rod 4 to push the clamping plate 3 out of the storage groove 5, then push the slide plate 13 upward along the inner wall of the slide groove 11. While squeezing the elastic element 12 and compressing it, the bottom insert plate 14 is driven out of the insertion hole 16. Then the clamping plate 3 can be removed, allowing the insertion block 15 to be disengaged from the insertion groove 6. After that, the chip removal mechanism can be maintained or replaced. After completion, reset the clamping plate 3 and place it on the outside of the insertion block 15. At the same time, release the slide plate 13 and use the elastic force of the elastic element 12 to push it downward, and drive the lower part of the insert plate 14 into the inner wall of the insertion hole 16 to continue to lock the clamping plate 3 and the insertion block 15 together, which is convenient for subsequent maintenance and use.

[0032] The working process of this utility model is as follows:

[0033] During use, the electric push rod 4 is used to push the two clamping plates 3 on both sides to clamp the mold for grinding operation. After grinding, the two clamping plates 3 are reset and the cleaning brush 10 is driven to clean the waste on the table and push it to both sides through the chip discharge hole into the collection frame. When not in use, one side of the clamping plate 3 can be stored in the inner wall of the storage groove 5 for later use. During the movement of the clamping plate 3, a moving groove 7 is opened at its lower part, and multiple elastic elements 8 are installed on the inner wall of the moving groove 7. The elastic force of the elastic elements 8 is used to push the moving plate 9 down along the inner wall of the moving groove 7, and the cleaning brush 10 is always kept in contact with the table of the grinding equipment body 1, thereby improving the chip removal effect.

[0034] When maintenance is required, activate the electric push rod 4 to push the clamping plate 3 out of the storage groove 5, then push the slide plate 13 upward along the inner wall of the slide groove 11. While squeezing the elastic element 12 and compressing it, the bottom insert plate 14 is driven out of the insertion hole 16. Then the clamping plate 3 can be removed, allowing the insertion block 15 to be disengaged from the insertion groove 6. The chip removal mechanism can then be maintained or replaced. After completion, reset the clamping plate 3 and place it on the outside of the insertion block 15. At the same time, release the slide plate 13 and use the elastic force of the elastic element 12 to push it downward, and drive the lower part of the insert plate 14 into the inner wall of the insertion hole 16 to continue to lock the clamping plate 3 and the insertion block 15 together, facilitating subsequent maintenance and use.

[0035] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0036] Secondly: The accompanying drawings of the embodiments disclosed in this utility model only involve the structures involved in the embodiments disclosed in this utility model. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this utility model can be combined with each other.

[0037] Finally: The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A chip removal mechanism for mold processing, characterized in that, The equipment includes a grinding equipment body (1) and a blocking frame (2). Electric push rods (4) are installed on the upper left and right sides of the grinding equipment body (1). A plug-in block (15) is installed at the output end of the electric push rod (4). A clamping plate (3) is installed on the outside of the plug-in block (15). A cleaning brush (10) is installed at the lower part of the clamping plate (3). Storage grooves (5) are opened on the left and right sides of the inner wall of the blocking frame (2).

2. The chip removal mechanism for mold processing according to claim 1, characterized in that, The lower part of the clamp (3) is provided with a moving groove (7), and a moving plate (9) is slidably connected to the lower side of the inner wall of the moving groove (7). Multiple elastic elements (8) are installed on the top of the moving plate (9).

3. The chip removal mechanism for mold processing according to claim 2, characterized in that, The bottom of the movable plate (9) is installed between the cleaning brush (10), the tops of the multiple elastic elements (8) are installed on the inner top wall of the movable groove (7), and the upper part of the cleaning brush (10) penetrates the bottom wall of the movable groove (7).

4. The chip removal mechanism for mold processing according to claim 1, characterized in that, The left and right sides of the clamping plates (3) are provided with sliding grooves (11) on the opposite side. The lower part of the inner wall of the sliding groove (11) is slidably connected to the slide plate (13). One side of the slide plate (13) is equipped with an elastic element (12), and the other side is equipped with an insert plate (14). The lower part of the opposite side of the left and right sides of the clamping plates (3) is provided with insertion grooves (6). The top of the insertion block (15) is provided with insertion holes (16).

5. The chip removal mechanism for mold processing according to claim 4, characterized in that, The top of the elastic element 2 (12) is installed on the inner top wall of the slide groove (11), and the adjacent sides of the plug blocks (15) on the left and right sides are plugged into the inner wall of the plug groove (6).

6. The chip removal mechanism for mold processing according to claim 4, characterized in that, The bottom of the insert plate (14) penetrates the inner top wall of the insertion groove (6) and is inserted into the inner wall of the insertion hole (16).

7. The chip removal mechanism for mold processing according to claim 1, characterized in that, The bottom of the cleaning brush (10) is attached to the upper surface of the grinding equipment body (1), and the opposite sides of the clamps (3) on the left and right sides are inserted into the inner wall of the storage groove (5). The near ends of the electric push rods (4) on the left and right sides pass through the blocking frame (2).

Citation Information

Patent Citations

  • Chip removing mechanism for mold machining

    CN222430420U