Radiator machining equipment

By using a clamping method combining clamping components and rubber pads in the radiator processing equipment, the problem of traditional fixtures blocking the area to be processed is solved, efficient and accurate radiator processing is achieved, and processing efficiency and quality is improved.

CN223012576UActive Publication Date: 2025-06-24DONGGUAN WEIFENG NEW MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202421887443.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-06
Publication Date
2025-06-24
Estimated Expiration
2034-08-06

AI Technical Summary

Technical Problem

When traditional fixtures are processed by metal radiators, they can easily block the area to be processed, resulting in reduced processing efficiency and reduced accuracy, and may affect the stroke of the tool.

Method used

A radiator processing equipment is designed, using a combination of clamping components and rubber pads to move the push blocks through the cylinder to realize the sliding of the rubber pads in the slide groove. It is combined with the inner stop block and side stop blocks on the clamping fixture to effectively clamp and fix the workpiece and avoid deviation.

Benefits of technology

It effectively avoids the problem of tool stroke obstruction, realizes the workpiece forming process, improves processing efficiency and accuracy, and avoids clamping on the workpiece surface, ensuring processing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses radiator processing equipment, which relates to the technical field of metal processing, and comprises a clamping component, and the clamping component comprises an adjustable plate; a workbench is fixedly installed on one side of the adjustable plate through multiple sets of supporting rods. A plurality of fixing blocks are fixedly mounted on the workbench; a push block is mounted on one side of each fixing block in a matched manner; the side, away from the fixing block, of the push block is inclined. The inclined surface of the push block is attached to the inclined surface arranged on one side of the rubber pad; the cylinder is fixedly mounted at the bottom of the workbench; the supporting table is placed in the middle of the clamping jig, the height of a to-be-machined part of the radiator is guaranteed, the inner stop blocks and the side stop blocks on the edge of the clamping jig are attached to the inner side edge of the to-be-machined part of the radiator, and then mounting holes in the two ends of the clamping jig are aligned with sensors mounted on the workbench. One end of the sensor penetrates into the mounting hole, the sensor sends a signal to the control system, the control system drives the push block to move through the multiple air cylinders, and the rubber mat is attached to the outer wall of the workpiece.
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Description

Technical Field

[0001] The utility model specifically relates to the technical field of metal processing, and specifically is a radiator processing device. Background Art

[0002] Metal radiators are devices widely used for heat dissipation of various equipment; metal radiators are usually made of metal materials such as copper and aluminum, and have good heat conduction performance. Its main function is to quickly conduct and dissipate the heat generated during the operation of the equipment to maintain the normal working temperature of the equipment and prevent overheating from damaging the equipment or affecting its performance; the designs and structures of metal radiators are diverse, and common forms include sheet-shaped, column-shaped, fin-shaped, etc.; these designs can increase the heat dissipation area and improve the heat dissipation efficiency; for example, fin-shaped radiators increase the contact area with air through numerous thin and dense fins to accelerate heat dissipation.

[0003] When a metal radiator is processed by a machine tool, the workpiece to be processed needs to be effectively fixed before processing. However, after the traditional fixture clamps the workpiece, it may block the part of the workpiece to be processed, so that it cannot effectively ensure that the processing equipment can form the workpiece in one processing. This greatly reduces the working efficiency of the processing equipment. Moreover, when the workpiece needs to be processed through multiple processes, the processing accuracy may decrease, and the efficiency of the radiator during use cannot be effectively guaranteed.

[0004] After retrieval, Chinese Patent Publication No. CN202120745977.1 discloses a fixing fixture for radiator processing; it includes: a bottom plate, a fixed seat, a plurality of support seats, a first clamping mechanism, a second clamping mechanism and a third clamping mechanism. The fixed seat is arranged on the bottom plate, and the plurality of support seats are arranged on both sides of the fixed seat in mirror symmetry. The first clamping mechanism, the second clamping mechanism and the third clamping mechanism are respectively arranged on the bottom plate.

[0005] When the above-mentioned structure fixes the workpiece, the third telescopic cylinder drives the connecting rod to rotate the clamping jaw along the rotating shaft on the second connecting seat. Although the clamping jaw can be used to clamp and fix the workpiece in this way, when the tool processes the workpiece, the clamping jaw will block the processing position of the workpiece, and it cannot effectively realize one-time processing and forming of the workpiece by the processing equipment. Moreover, the fixing plate, the first telescopic cylinder and the second telescopic cylinder in the above-mentioned patent are arranged on one side of the workpiece, so when the tool of the processing equipment contacts the workpiece, it may affect the stroke of the tool; making the tool unable to effectively reach the position that needs to be processed.

[0006] In view of the above situation, we provide a radiator processing device. In this device, the clamping fixture is installed on the workbench, and then the workpiece to be processed is installed on the clamping fixture, so as to effectively clamp the bottom of the workpiece to be processed. When processing the top of the workpiece, the clamping fixture will not affect the stroke of the tool, realizing one-time processing and forming of the workpiece. Moreover, in this device, a rubber pad cooperating with the clamping fixture is also installed on the workbench. The push block is driven to move up and down by the air cylinder, and the inclined surface of the push block is fitted with the inclined surface of the rubber pad, so that the rubber pad can slide effectively in the chute, realizing fitting contact with the outer surface of the workpiece. The rubber pad and the inner stop block and side stop block arranged at the edge of the clamping fixture effectively clamp and fix the workpiece to be processed, effectively preventing the workpiece from shifting during the processing process and effectively ensuring the processing quality of the workpiece. Summary of the Utility Model

[0007] The purpose of the present utility model is to provide a radiator processing device. A rubber pad cooperating with the clamping fixture is also installed on the workbench. The push block is driven to move up and down by the air cylinder, and the inclined surface of the push block is fitted with the inclined surface of the rubber pad, so that the rubber pad can slide effectively in the chute, realizing fitting contact with the outer surface of the workpiece. The rubber pad and the inner stop block and side stop block arranged at the edge of the clamping fixture effectively clamp and fix the workpiece to be processed, effectively preventing the workpiece from shifting during the processing process, so as to solve the problems in the above background technology.

[0008] To achieve the above purpose, the present utility model provides the following technical solutions:

[0009] A radiator processing device includes a clamping assembly, and the clamping assembly includes an adjustable plate; long slots for easy adjustment are opened at both ends of the adjustable plate; one side of the adjustable plate is fixedly installed with a workbench through a plurality of support rods; a plurality of fixed blocks are fixedly installed on the workbench; a push block is cooperatively installed on one side of each of the plurality of fixed blocks; the side of the push block away from the fixed block is provided with an inclined surface; the inclined surface of the push block is fitted with the inclined surface provided on one side of the rubber pad; the rubber pad is slidably installed in a chute opened on the workbench; the overall position of the clamping assembly can be adjusted through the long slots opened at both ends of the adjustable plate;

[0010] The bottom of the push block is fixedly installed with the push rod of the air cylinder, and the push rod of the air cylinder penetrates through the workbench; and the air cylinder is fixedly installed at the bottom of the workbench; in this way, when machining the radiator mechanically, the stroke of the tool will not be blocked, effectively ensuring that the tool can reach the machining position of the workpiece, and realizing one-time machining and forming of the radiator;

[0011] As a further technical solution of the present utility model, a sensor is also cooperatively installed on the workbench; the sensor penetrates through the workbench, and one end of the sensor extends into the installation hole opened on the clamping fixture; an inner stop block and a side stop block are integrally arranged on one side edge of the clamping fixture away from the workbench; the inner stop block is attached to the inner edge of the radiator workpiece to be processed; after the clamping fixture is installed, the sensor sends a signal to the control system, enabling multiple cylinders to drive the push block to move simultaneously. Through the sliding of the rubber pad inside the chute, the rubber pad is attached to the outer wall of the radiator. Through the cooperation of the rubber pad with the inner stop block and the side stop block, the radiator workpiece to be processed is effectively clamped and fixed, avoiding the situation of the radiator workpiece to be processed shifting during the processing; through the clamping of the rubber pad, the surface of the workpiece is effectively prevented from being scratched, effectively ensuring the quality of the workpiece;

[0012] As a further technical solution of the present utility model, a support platform is also cooperatively arranged on the clamping fixture. The support platform is attached and connected to the middle position of the radiator workpiece to be processed, and the radiator workpiece to be processed is in an 8 - shaped configuration; the support platform is equivalent to the lower stop block of the clamping fixture, and simultaneously supports the radiator workpiece to be processed; ensuring the stability of the radiator workpiece to be processed during the processing;

[0013] As a further technical solution of the present utility model, a tool is arranged on the top of the radiator workpiece to be processed. The tool is movably installed on one side of the Z - axis moving component at the end of the installation frame; the bottom of the installation frame is slidably installed on the Y - axis moving structure; one side of the Y - axis moving structure away from the installation frame is also installed on the X - axis moving structure; both ends of the X - axis moving structure are fixedly installed on the support frame; the support frame is fixedly installed on the base; through the adjustment of the X - axis moving structure and the Y - axis moving structure, the installation frame movably installed on the Y - axis moving structure is adjusted to different positions, and then through the installation seat, the tool installed on the Z - axis moving component processes different positions of the radiator workpiece to be processed, realizing the one - time forming of the radiator finished product;

[0014] As a further technical solution of the present utility model, the tool on the Z - axis moving component is perpendicularly arranged with the radiator workpiece to be processed on the clamping fixture; ensuring the processing accuracy of the radiator finished product during processing;

[0015] As a further technical solution of the present utility model, the bottom of the adjustable plate is cooperatively installed on the stroke component through the long slots opened at both ends.

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

[0017] 1. When the present utility model is in use, place the support platform in the middle position of the clamping fixture, so as to effectively ensure the height of the workpiece to be processed of the figure-eight radiator. The inner stop block and the side stop block on one edge of the clamping fixture are attached to the inner edge of the workpiece to be processed of the radiator, realizing the inner support of the workpiece to be processed of the radiator. Then align the mounting holes at both ends of the clamping fixture with the sensors installed on the workbench, so that one end of the sensor penetrates into the mounting hole. At this time, the sensor sends a signal to the control system, and the control system drives the push block to move through multiple cylinders;

[0018] 2. When the push block moves downward in the present utility model, the push block realizes vertical up-and-down movement under the blockage of the fixed block. The inclined surface on the side of the push block close to the rubber pad is attached to the inclined surface on the rubber pad, realizing the forward sliding of the rubber pad in the chute opened on the workbench, so that the rubber pad is attached to the outer wall of the workpiece to be processed of the radiator. Through the rubber pad, the inner stop block and the side stop block on the clamping fixture, effective clamping of the side wall of the workpiece to be processed of the radiator is realized, avoiding the situation of deviation of the workpiece to be processed of the radiator during processing, and ensuring the processing quality of the finished radiator;

[0019] 3. When processing in the present utility model, drive the tool to contact the workpiece to be processed of the radiator through the Z-axis moving component. The Z-axis moving component is fixedly installed on the mounting frame. When it is necessary to perform mechanical processing on different positions of the workpiece to be processed of the radiator, through the adjustment of the X-axis moving structure and the Y-axis moving structure, the mounting frame drives the Z-axis moving component to move horizontally and vertically, meeting the requirement that the Z-axis moving component drives the tool to realize the processing of different positions of the workpiece to be processed of the radiator, ensuring the processing accuracy of the finished radiator, and at the same time effectively ensuring the one-time processing and forming of the finished radiator, greatly improving the work efficiency. Description of the Drawings

[0020] Figure 1 is the three-dimensional structural schematic diagram of the present utility model.

[0021] Figure 2 is in the present utility model Figure 1 three-dimensional structural schematic diagram of the clamping component.

[0022] Figure 3 is in the present utility model Figure 1 bottom structural schematic diagram.

[0023] Figure 4 is in the present utility model Figure 2 side view.

[0024] Figure 5 is in the present utility model Figure 2 exploded schematic diagram.

[0025] Figure 6 is in the present utility model Figure 4 A-A cross-sectional view.

[0026] Figure 7 is the assembly schematic diagram of the clamping fixture and the radiator workpiece to be processed in the present utility model. Figure 2

[0027] Figure 8 is the three-dimensional structure schematic diagram of the clamping fixture in the present utility model. Figure 7

[0028] Figure 9 is the schematic diagram of the radiator workpiece to be processed in the present utility model. Figure 7

[0029] Figure 10 is the schematic diagram of the finished radiator in the present utility model. Figure 9

[0030] In the figure: 1 - base, 2 - support frame, 3 - X-axis moving structure, 4 - Y-axis moving structure, 5 - mounting frame, 6 - Z-axis moving component, 7 - clamping component, 71 - adjustable plate, 72 - workbench, 720 - sliding groove, 73 - support rod, 74 - cylinder, 75 - fixed block, 76 - push block, 77 - rubber pad, 78 - support table, 79 - clamping fixture, 790 - mounting hole, 791 - inner stop block, 792 - side stop block, 710 - sensor, 8 - radiator workpiece to be processed, 9 - finished radiator. Specific embodiments

[0031] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.

[0032] Please refer to Figure 1-10 , in the embodiment of the present utility model, a radiator processing device includes a clamping component 7, and the clamping component 7 includes an adjustable plate 71; long slots for easy adjustment are opened at both ends of the adjustable plate 71; one side of the adjustable plate 71 is fixedly installed with a workbench 72 through a plurality of support rods 73; a plurality of fixed blocks 75 are fixedly installed on the workbench 72; a push block 76 is cooperatively installed on one side of each of the plurality of fixed blocks 75; the side of the push block 76 away from the fixed block 75 is provided with an inclined surface; the inclined surface of the push block 76 is attached to the inclined surface provided on one side of the rubber pad 77; the rubber pad 77 is slidably installed in the sliding groove 720 opened on the workbench 72;

[0033] ​​​​The bottom of the push block 76 is fixedly installed with the push rod of the air cylinder 74, wherein the push rod of the air cylinder 74 penetrates through the workbench 72; and the air cylinder 74 is fixedly installed at the bottom of the workbench 72;

[0034] Specifically, a sensor 710 is also cooperatively installed on the workbench 72; the sensor 710 penetrates through the workbench 72, and one end thereof extends into the installation hole 790 opened on the clamping fixture 79; an inner stop block 791 and a side stop block 792 are integrally arranged on one side edge of the clamping fixture 79 away from the workbench 72; the inner stop block 791 is attached to the inner edge of the radiator workpiece to be processed 8; the inner stop block 791 and the side stop block 792 match the protrusions on the inner edge of the radiator workpiece to be processed 8, so as to effectively realize the inner support of the radiator workpiece to be processed 8;

[0035] By adopting the above technical solution, during use, the support table 78 is placed in the middle position of the clamping fixture 79, so as to effectively ensure the height of the radiator workpiece to be processed 8. The inner stop block 791 and the side stop block 792 on one side edge of the clamping fixture 79 are attached to the inner edge of the radiator workpiece to be processed 8 to realize the inner support of the radiator workpiece to be processed 8. Then, the installation holes 790 at both ends of the clamping fixture 79 are aligned with the sensors 710 installed on the workbench 72, so that one end of the sensor 710 penetrates into the installation hole 790. At this time, the sensor 710 sends a signal to the control system, and the control system drives the push block 76 to move through a plurality of air cylinders 74;

[0036] A support table 78 is also cooperatively arranged on the clamping fixture 79. The support table 78 is attached and connected to the middle position of the radiator workpiece to be processed 8; the radiator workpiece to be processed 8 is in an 8 - shaped form; the support table 78 also serves as a lower stop block of the clamping fixture 79, so as to ensure the height of the radiator workpiece to be processed 8 and at the same time realize the support of the radiator workpiece to be processed 8, effectively avoiding the situation that the radiator workpiece to be processed 8 is offset during processing;

[0037] In this embodiment, a tool is arranged at the top of the radiator workpiece to be processed 8. The tool is movably installed on one side of the Z - axis moving assembly 6 at the end of the mounting rack 5; the bottom of the mounting rack 5 is slidably installed on the Y - axis moving structure 4; the side of the Y - axis moving structure 4 away from the mounting rack 5 is also installed on the X - axis moving structure 3; both ends of the X - axis moving structure 3 are fixedly installed on the support frame 2; the support frame 2 is fixedly installed on the base 1;

[0038] By adopting the above technical solution, when the pushing block 76 moves downward, the pushing block 76 realizes vertical up-and-down movement under the block of the fixed block 75. The inclined surface of the pushing block 76 close to the rubber pad 77 fits with the inclined surface on the rubber pad 77, so that the rubber pad 77 slides forward in the sliding groove 720 opened on the workbench 72, making the rubber pad 77 fit with the outer wall of the radiator workpiece 8 to be processed. The inner stop block 791 and the side stop block 792 on the clamping fixture 79 and the rubber pad 77 effectively clamp the side wall of the radiator workpiece 8 to be processed, avoiding the situation that the radiator workpiece 8 to be processed shifts during processing and ensuring the processing quality of the radiator finished product 9.

[0039] In this embodiment, the tool on the Z-axis moving assembly 6 is vertically arranged with the radiator workpiece 8 to be processed on the clamping fixture 79.

[0040] Furthermore, the bottom of the adjustable plate 71 is installed on the stroke assembly through the long grooves opened at both ends.

[0041] By adopting the above technical solution, during processing, the Z-axis moving assembly 6 drives the tool to contact the radiator workpiece 8 to be processed. The Z-axis moving assembly 6 is fixedly installed on the mounting frame 5. When mechanical processing of different positions of the radiator workpiece 8 to be processed is required, through the adjustment of the X-axis moving structure 3 and the Y-axis moving structure 4, the mounting frame 5 drives the Z-axis moving assembly 6 to move horizontally and vertically, meeting the requirement that the Z-axis moving assembly 6 drives the tool to process different positions of the radiator workpiece 8 to be processed, ensuring the processing accuracy of the radiator finished product 9, and effectively ensuring that the radiator finished product 9 is formed in one processing, greatly improving the work efficiency.

[0042] The working principle of the present utility model is as follows: during use, the support table 78 is placed at the middle position of the clamping fixture 79, effectively ensuring the height of the radiator workpiece 8 to be processed. The inner stop block 791 and the side stop block 792 on one edge of the clamping fixture 79 fit with the inner edge of the radiator workpiece 8 to be processed to realize the inner support of the radiator workpiece 8 to be processed. Then, the mounting holes 790 at both ends of the clamping fixture 79 are aligned with the sensors 710 installed on the workbench 72, so that one end of the sensor 710 penetrates into the mounting hole 790. At this time, the sensor 710 sends a signal to the control system, and the control system drives the pushing block 76 to move through a plurality of cylinders 74.

[0043] When the pushing block 76 moves downward, the pushing block 76 realizes vertical up-and-down movement under the blockage of the fixed block 75. The inclined surface of the pushing block 76 close to the rubber pad 77 fits with the inclined surface on the rubber pad 77, enabling the rubber pad 77 to slide forward in the sliding groove 720 formed on the workbench 72, so that the rubber pad 77 fits with the outer wall of the radiator workpiece 8 to be processed. The inner stop block 791 and the side stop block 792 on the clamping fixture 79 and the rubber pad 77 are used to effectively clamp the side wall of the radiator workpiece 8 to be processed, avoiding the situation that the radiator workpiece 8 to be processed shifts during processing and ensuring the processing quality of the radiator finished product 9.

[0044] During processing, the Z-axis moving component 6 drives the tool to contact the radiator workpiece 8 to be processed. The Z-axis moving component 6 is fixedly installed on the mounting frame 5. When mechanical processing of different positions of the radiator workpiece 8 to be processed is required, through the adjustment of the X-axis moving structure 3 and the Y-axis moving structure 4, the mounting frame 5 drives the Z-axis moving component 6 to move horizontally and vertically, meeting the requirement that the Z-axis moving component 6 drives the tool to process different positions of the radiator workpiece 8 to be processed, ensuring the processing accuracy of the radiator finished product 9. At the same time, it effectively ensures that the radiator finished product 9 is formed in one processing, greatly improving the work efficiency.

[0045] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and the present utility model can be implemented in other specific forms without departing from the spirit or basic characteristics of the present utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.

[0046] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A radiator processing equipment, characterized in that: The clamping assembly (7) comprises an adjustable plate (71); long grooves for facilitating adjustment are provided at both ends of the adjustable plate (71); a workbench (72) is fixedly mounted on one side of the adjustable plate (71) via a plurality of support rods (73); a plurality of fixed blocks (75) are fixedly mounted on the workbench (72); a push block (76) is mounted on one side of each of the plurality of fixed blocks (75); a side of the push block (76) away from the fixed block (75) is provided with an inclined surface; the inclined surface of the push block (76) is in contact with an inclined surface provided on one side of a rubber pad (77); the rubber pad (77) is slidably mounted in a slide groove (720) provided on the workbench (72); The bottom of the push block (76) is fixedly mounted to the push rod of the cylinder (74), wherein the push rod of the cylinder (74) passes through the workbench (72); and the cylinder (74) is fixedly mounted on the bottom of the workbench (72).

2. The heat sink processing equipment according to claim 1, characterized in that: A sensor (710) is also mounted on the workbench (72); the sensor (710) passes through the workbench (72), with one end thereof extending into a mounting hole (790) provided on a clamping fixture (79); an inner stop block (791) and a side stop block (792) are integrally provided on an edge of the clamping fixture (79) away from the workbench (72); the inner stop block (791) fits against an inner edge of the heat sink workpiece (8) to be processed.

3. The heat sink processing equipment according to claim 2, characterized in that: The clamping fixture (79) is also provided with a support platform (78), and the support platform (78) is fitted and connected to the middle position of the heat sink workpiece (8) to be processed, and the heat sink workpiece (8) to be processed is in an 8-shape.

4. The heat sink processing equipment according to claim 3, characterized in that: A tool is provided on the top of the heat sink workpiece (8), and the tool is movably mounted on one side of the Z-axis moving component (6) at the end of the mounting frame (5); the bottom of the mounting frame (5) is slidably mounted on the Y-axis moving structure (4); the side of the Y-axis moving structure (4) away from the mounting frame (5) is mounted on the X-axis moving structure (3); both ends of the X-axis moving structure (3) are fixedly mounted on the support frame (2); and the support frame (2) is fixedly mounted on the base (1).

5. The heat sink processing equipment according to claim 4, characterized in that: The tool on the Z-axis moving assembly (6) and the heat sink workpiece (8) on the clamping fixture (79) are arranged vertically.

6. The heat sink processing equipment according to claim 4, characterized in that: The bottom of the adjustable plate (71) is mounted on the stroke assembly through long slots provided at both ends.

Citation Information

Patent Citations

  • Fixing clamp for radiator machining

    CN214817975U