Automatic grooving machine for cooling fins

By designing an automatic groove cutting machine with telescopic rod and pushing plate, the problem of scattered collection of finished products of the radiator fin is solved, and the automatic neat arrangement and efficient packing of finished products are achieved.

CN222944953UActive Publication Date: 2025-06-06DONGGUAN ZHONGWANG ELECTRIC CO LTD
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Patent Information

Application Number
CN202422089568.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-06-06
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

After processing, the existing automatic trench cutter of the heat sink is relatively scattered when collecting the finished fins, which leads to workers needing manual sorting and low efficiency.

Method used

An automatic groove cutting machine is designed, including a equipment body, a feeding bracket, a processing table and a cutting and grinding mechanism. The pushing plate and the material guide groove are driven by the first and second telescopic rods to achieve neat arrangement of the finished products of the heat sink.

Benefits of technology

The automatic and neat arrangement of finished products of the radiator fin is realized, which reduces the need for manual packing, improves processing efficiency, and avoids deformation of the finished products due to impact.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic grooving machine for cooling fins, and aims to solve the technical problems that in the prior art, machined cooling fin finished products are scattered during receiving, so that workers need to arrange the cooling fin finished products manually when boxing the cooling fin finished products, and the manual operation efficiency is low. The automatic grooving machine comprises an equipment body, a feeding support, a machining table and a cutting and polishing mechanism, the side surface of the equipment body is connected with the feeding support, cooling fin raw materials are placed on the upper surface of the feeding support, and the machining table is installed in the equipment body. According to the automatic grooving machine, when a first telescopic rod extends, a cooling fin finished product is extruded through a first material pushing plate to move into a material guiding groove, when the cooling fin finished product passes through an inclined surface to the bottom side, a second telescopic rod pushes the cooling fin finished product into a material placing disc through a second material pushing plate, and the cooling fin finished product can be neatly arranged through repeated material pushing; and therefore, the finished cooling fins can be conveniently boxed without manual arrangement, and the machining efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of heat sink processing, and in particular relates to an automatic groove cutting machine for heat sinks. Background Art

[0002] The automatic heat sink groover is a mechanical device specially used for groove, slot and efficient cutting of heat sinks. The automatic heat sink groover is mainly used for high-speed and efficient groove, slot and cutting of aluminum heat sinks, and is also suitable for cutting and processing other materials. This equipment can significantly improve the processing efficiency and product quality of heat sinks and meet the production needs of various heat sinks. The existing automatic groover has the following problems during use:

[0003] The existing automatic grooving machine for heat sinks cuts and grinds the heat sink raw materials through a cutting and grinding mechanism during use. In order to increase the processing speed of the heat sink, multiple heat sink raw materials are usually processed side by side. However, the finished heat sink products after processing are currently scattered when they are collected. This will cause workers to manually organize the finished heat sink products when packing them, and manual operation efficiency is low. Utility Model Content

[0004] (1) Technical issues to be solved

[0005] In view of the shortcomings of the prior art, the purpose of the utility model is to provide an automatic grooving machine for heat sinks, which aims to solve the technical problem that the finished heat sinks processed under the prior art are scattered when they are collected, which causes workers to manually sort the finished heat sinks when packing them, and the manual operation efficiency is low.

[0006] (2) Technical solution

[0007] In order to solve the above technical problems, the utility model provides such an automatic groove cutting machine for heat sinks, which includes an equipment body, a feeding bracket, a processing table and a cutting and grinding mechanism. The side surface of the equipment body is connected with the feeding bracket, and the upper surface of the feeding bracket is placed with heat sink raw materials. The processing table is installed inside the equipment body, and the heat sink raw materials are plugged into the inside of the conveying mechanism of the processing table. The surface of the processing table is slidably installed with a cutting and grinding mechanism, and the upper surface of the processing table is placed with finished heat sinks.

[0008] A material guide trough is connected to one side of the processing table, a first telescopic rod is installed inside the equipment body, the telescopic end of the first telescopic rod is connected to the first push plate, the outer surface of the equipment body is connected to the first support plate, the first support plate is connected to the bottom side of the material guide trough, a second push plate is inserted into the bottom side of the material guide trough, a second telescopic rod is installed between the second push plate and the upper surface of the first support plate, the outer surface of the equipment body is connected to the second support plate, the upper surface of the second support plate is connected to a limiting protrusion, and a material discharge tray is placed on the upper surface of the second support plate.

[0009] When using the automatic groove cutting machine of the present technical solution, the loading of the heat sink raw material can push the finished heat sink product in front to move horizontally. When the finished heat sink moves to the end of the first pushing plate, the first telescopic rod can be extended to squeeze the finished heat sink to move closer to the inside of the material guide groove through the first pushing plate. When the finished heat sink is inside the material guide groove, it can slide to the bottom side along the inclined surface. When the second telescopic rod is extended, the finished heat sink can be pushed into the discharge tray through the second pushing plate. After the second telescopic rod drives the second pushing plate to reset, it can push the material again. In this way, the finished heat sink products can be arranged neatly.

[0010] Preferably, a telescopic structure is formed between the first push plate and the first telescopic rod, and the first push plate and the center line of the material guide groove are in the same vertical plane. When the first telescopic rod is extended, it can drive the first push plate to move laterally. The lateral movement of the first push plate can squeeze the finished heat sink to move in the direction close to the material guide groove, thereby pushing the finished heat sink close to the material guide groove.

[0011] Furthermore, the width of the middle portion of the material guide groove matches the width of the finished heat sink, which can prevent the finished heat sink from shifting near the inner side of the material guide groove and causing the position to be scattered.

[0012] Furthermore, a telescopic structure is formed between the second push plate and the second telescopic rod. When the second telescopic rod is extended, it can squeeze the second push plate to move laterally. The lateral movement of the second push plate can squeeze the finished heat sink, so that the entire row of finished heat sinks can move at the same time, thereby keeping them neat.

[0013] Furthermore, the size of the material discharging tray matches the size of the area surrounded by the limiting protrusions, so that the material discharging tray can be placed to avoid misalignment of the material discharging tray.

[0014] Furthermore, the inner wall of the discharge tray close to the material guide trough is at the same height as the inner wall of the bottom end of the material guide trough, so that the inner wall of the material guide trough can facilitate the finished heat sink to enter the discharge tray.

[0015] Beneficial Effects

[0016] Compared with the prior art, the beneficial effects of the present invention are:

[0017] When the heat sink is in the material guide groove, the first telescopic rod is extended and the heat sink is squeezed by the first push plate to move toward the inner part of the material guide groove. When the heat sink is in the material guide groove, it can slide to the bottom side via the inclined surface. When the second telescopic rod is extended, the heat sink can be pushed into the discharge tray through the second push plate. After the second telescopic rod drives the second push plate to reset, the material can be pushed again. In this way, the heat sink products can be arranged neatly, thereby facilitating the packing of the heat sink products without manual arrangement, improving the processing efficiency. The discharging structure of this invention can avoid mutual collision between the heat sink products, and can effectively reduce the deformation of the heat sink products due to collision. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the main structure of a specific implementation of the device of the utility model;

[0019] Figure 2 A longitudinal sectional view of the internal structure of the device body of a specific implementation mode of the utility model device;

[0020] Figure 3 It is a transverse and longitudinal sectional view of the main structure of the device of a specific implementation mode of the utility model;

[0021] Figure 4 This is a schematic diagram of the material guide trough structure of a specific implementation of the device of the utility model;

[0022] Figure 5 This is a schematic diagram of the heat sink material structure of a specific implementation of the device of the utility model;

[0023] Figure 6 The figure is a schematic diagram of the finished structure of a heat sink according to a specific implementation mode of the device of the utility model.

[0024] The markings in the attached drawings are: 1. Equipment body; 2. Loading bracket; 3. Processing table; 4. Cutting and grinding mechanism; 5. Heat sink raw material; 6. Heat sink finished product; 7. Material guide trough; 8. First telescopic rod; 9. First push plate; 10. First support plate; 11. Second telescopic rod; 12. Second push plate; 13. Second support plate; 14. Limiting protrusion; 15. Discharge tray. DETAILED DESCRIPTION

[0025] This specific embodiment is a heat sink automatic groove cutting machine, and its structural schematic diagram is as follows Figure 1-6As shown, the automatic groove cutting machine includes an equipment body 1, a feeding bracket 2, a processing table 3 and a cutting and grinding mechanism 4. The side surface of the equipment body 1 is connected with the feeding bracket 2, and the upper surface of the feeding bracket 2 is placed with a heat sink raw material 5. The processing table 3 is installed inside the equipment body 1. The heat sink raw material 5 is plugged into the inside of the conveying mechanism of the processing table 3. The surface of the processing table 3 is slidably installed with a cutting and grinding mechanism 4, and the upper surface of the processing table 3 is placed with a heat sink finished product 6;

[0026] A material guide trough 7 is connected to one side of the processing table 3, a first telescopic rod 8 is installed inside the equipment body 1, the telescopic end of the first telescopic rod 8 is connected to a first push plate 9, the outer surface of the equipment body 1 is connected to a first support plate 10, the first support plate 10 is connected to the bottom side of the material guide trough 7, a second push plate 12 is inserted into the bottom side of the material guide trough 7, a second telescopic rod 11 is installed between the second push plate 12 and the upper surface of the first support plate 10, the outer surface of the equipment body 1 is connected to a second support plate 13, the upper surface of the second support plate 13 is connected to a limiting protrusion 14, and a material discharge tray 15 is placed on the upper surface of the second support plate 13.

[0027] The first push plate 9 and the first telescopic rod 8 form a telescopic structure, the first push plate 9 and the center line of the guide groove 7 are in the same vertical plane, and the width of the middle part of the guide groove 7 matches the width of the finished heat sink 6.

[0028] In addition, a telescopic structure is formed between the second push plate 12 and the second telescopic rod 11, the size of the discharge tray 15 matches the size of the area surrounded by the limiting protrusion 14, and the inner wall of the discharge tray 15 close to the material guide trough 7 is at the same height as the inner wall at the bottom of the material guide trough 7.

[0029] Working principle: When using the device of the present technical solution, first place the heat sink raw material 5 on the upper surface of the loading bracket 2, and insert the end of the heat sink raw material 5 into the conveying mechanism of the processing table 3, and then the conveying mechanism can realize automatic loading. When the heat sink raw material 5 moves to the bottom side of the cutting and grinding mechanism 4, the heat sink raw material 5 can be cut and ground by the cutting and grinding mechanism 4, so that the heat sink finished product 6 can be processed. Then, the heat sink raw material 5 continues to be loaded to push the heat sink finished product 6 to move horizontally. When the heat sink finished product 6 moves to the end of the first pushing plate 9, the first telescopic rod 8 can be operated, and the first telescopic rod 8 can drive the first pushing plate 9 when it is extended. The first push plate 9 moves laterally, and the first push plate 9 can move laterally to squeeze the finished heat sink 6 to move toward the guide groove 7. When the finished heat sink 6 moves to the inside of the guide groove 7, it can slide toward the bottom side via the inclined surface, and then the second telescopic rod 11 can be operated. When the second telescopic rod 11 is extended, it can squeeze the second push plate 12 to move laterally. The second push plate 12 can squeeze the finished heat sink 6 by moving laterally. The finished heat sink 6 is squeezed and can enter the inner side of the discharge tray 15 in a row. When the second telescopic rod 11 contracts, it can drive the second push plate 12 to reset, and then the second row of finished heat sinks 6 can be pushed into the discharge tray 15, so that the finished heat sinks 6 can be arranged neatly.

[0030] All technical features in this embodiment can be freely combined according to actual needs.

[0031] The above embodiments are preferred implementation schemes of the present invention. In addition, the present invention can also be implemented in other ways. Any obvious replacement without departing from the concept of the present technical solution is within the protection scope of the present invention.

Claims

1. An automatic grooving machine for heat sinks, comprising a device body (1), a feeding bracket (2), a processing table (3) and a cutting and grinding mechanism (4), characterized in that: The side surface of the equipment body (1) is connected to a loading bracket (2), a heat sink raw material (5) is placed on the upper surface of the loading bracket (2), a processing table (3) is installed inside the equipment body (1), the heat sink raw material (5) is plugged into the inside of the conveying mechanism of the processing table (3), a cutting and grinding mechanism (4) is slidably installed on the surface of the processing table (3), and a heat sink finished product (6) is placed on the upper surface of the processing table (3); A material guide trough (7) is connected to one side of the processing table (3); a first telescopic rod (8) is installed inside the equipment body (1); the telescopic end of the first telescopic rod (8) is connected to a first push plate (9); the outer surface of the equipment body (1) is connected to a first support plate (10); the first support plate (10) is connected to the bottom side of the material guide trough (7); a second push plate (12) is inserted into the bottom side of the material guide trough (7); a second telescopic rod (11) is installed between the second push plate (12) and the upper surface of the first support plate (10); the outer surface of the equipment body (1) is connected to a second support plate (13); the upper surface of the second support plate (13) is connected to a limiting protrusion (14); and a material discharge tray (15) is placed on the upper surface of the second support plate (13).

2. The automatic groove cutting machine for heat sink according to claim 1, characterized in that: A telescopic structure is formed between the first push plate (9) and the first telescopic rod (8).

3. The automatic groove cutting machine for heat sink according to claim 2, characterized in that: The first pushing plate (9) and the midline of the material guide trough (7) are located in the same vertical plane.

4. The automatic heat sink groove cutting machine according to claim 1, characterized in that: The width of the middle portion of the material guide groove (7) matches the width of the finished heat sink (6).

5. The automatic heat sink groove cutting machine according to claim 1, characterized in that: A telescopic structure is formed between the second push plate (12) and the second telescopic rod (11).

6. The automatic heat sink groove cutting machine according to claim 1, characterized in that: The size of the discharge tray (15) matches the size of the area enclosed by the limiting protrusion (14).

7. The automatic heat sink groove cutting machine according to claim 1, characterized in that: The inner wall of the discharge tray (15) close to the material guide trough (7) is at the same height as the inner wall at the bottom end of the material guide trough (7).