Metal shielding case stamping part

By combining adjustment devices, heat dissipation devices, and antibacterial coatings, the problems of low installation, adjustment, and heat dissipation efficiency of metal shielding stamped parts are solved, improving flexibility and practicality, enhancing the reliability and hygiene safety of electronic components, and ensuring electromagnetic shielding performance.

CN223515224UActive Publication Date: 2025-11-04SUZHOU XINZEFU PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202422830134.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-11-04
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing metal shielding stamped parts are not easy to adjust during installation, resulting in misfit installation, affecting efficiency, and poor heat dissipation, which can easily reduce the reliability and lifespan of electronic components. At the same time, there is a risk of microbial growth, which affects hygiene and safety and electromagnetic shielding effectiveness.

Method used

The size of the plate can be flexibly adjusted by using an adjustment device in conjunction with a sliding groove, through the sliding connection between the magnetic block and the sliding groove and the sleeve of the fixing block; combined with a heat dissipation device, the heat conduction of fins, heat pipes and heat absorption plates is used to increase heat dissipation efficiency; and a silver-based antibacterial agent is used as an antibacterial coating to inhibit the growth of microorganisms.

Benefits of technology

It improves the flexibility and practicality of the device, enhances heat dissipation efficiency, extends the lifespan of electronic components, raises hygiene and safety standards, and ensures electromagnetic shielding effectiveness and mechanical performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of metal stamping parts, and discloses a metal shielding cover stamping part, which comprises four plate bodies, and mounting holes are arranged at the upper parts of the centers of the front end surfaces of the two plate bodies at the upper parts and the lower parts of the centers of the front end surfaces of the two plate bodies at the lower parts. Sliding grooves are formed in the positions, close to one sides, of the upper ends of the centers of the rear end faces of the four plate bodies and the positions, close to the lower ends of one sides of the centers, of the rear end faces of the four plate bodies, adjusting devices are arranged in the four sliding grooves in a sleeved mode, and heat dissipation devices are arranged in the centers of the front end faces of the four plate bodies. Antibacterial coatings are arranged at the centers of the front end surfaces of the four plate bodies, the upper and lower end surfaces and one side wall of the two plate bodies close to one side, and the upper and lower end surfaces and the other side wall of the two plate bodies close to the other side. According to the utility model, through the adjusting device and the sliding chute, the size of the plate body can be adjusted according to the installation requirements of workers, and the influence on the installation efficiency caused by inappropriate installation is avoided, so that the flexibility and the practicability of the device are improved.
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Description

Technical Field

[0001] This utility model relates to the field of metal stamping technology, and in particular to a metal shielding cover stamping part. Background Technology

[0002] With the widespread use and increasing complexity of electronic devices, electromagnetic interference has become a prominent issue. To ensure the normal operation of electronic devices, effective electromagnetic shielding measures are needed, which requires the use of metal shielding cover stamping parts. Metal shielding cover stamping parts are components used in electronic devices to prevent electromagnetic interference.

[0003] Currently, when using stamped metal shielding covers, it is difficult for workers to adjust the size of the plate according to the installation requirements during the installation process, which can easily lead to misfitting installation and affect installation efficiency, thereby reducing the flexibility and practicality of the device. During the use of the device, heat dissipation problems can affect the normal operation and service life of electronic components, thereby reducing the heat dissipation effect. Therefore, those skilled in the art provide a stamped metal shielding cover to solve the problems mentioned in the background art. Utility Model Content

[0004] The purpose of this utility model is to address the shortcomings of existing technologies by proposing a metal shielding cover stamping part. Through the coordinated use of an adjustment device and a sliding groove, the size of the plate can be adjusted according to the installation needs of the workers, avoiding installation incompatibility that affects installation efficiency, thereby improving the flexibility and practicality of the device. Furthermore, the heat dissipation device effectively dissipates heat from the plate and increases the surface contact with the surrounding environment, enabling rapid conduction of internally generated heat to the external environment, thus improving heat dissipation efficiency and the reliability and lifespan of electronic components. Finally, the antibacterial coating made of silver-based antibacterial agent effectively inhibits the growth of bacteria, viruses, and fungi, and effectively reduces the number and growth rate of microorganisms, thereby improving the hygiene and safety standards of the equipment, reducing health risks caused by microorganisms, and ensuring the electromagnetic shielding effectiveness and mechanical performance of the equipment.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a metal shielding cover stamping part, comprising four plates, the four plates being arranged in a rectangular configuration, with mounting holes provided at the upper and lower sides of the front face centers of the two upper plates and the lower side of the front face centers of the two lower plates, and sliding grooves provided at the upper and lower sides of the rear face centers of the four plates, with adjusting devices fitted inside the four sliding grooves, and heat dissipation devices provided at the center of the front face of the four plates, and antibacterial coatings provided at the center of the front face, the upper and lower ends of the two plates on one side, and the upper and lower ends of the two plates on the other side;

[0006] Through the above technical solution, by using the adjustment device in conjunction with the slide, the size of the plate can be adjusted according to the installation needs of the workers, avoiding installation incompatibility that would affect installation efficiency, thereby improving the flexibility and practicality of the device.

[0007] Furthermore, the adjusting device includes a fixed block, four sliding grooves, two magnetic blocks, and four magnetic blocks. The fixed block is respectively fitted inside the two sliding grooves. The four sliding grooves are respectively located at the center of the upper and lower inner walls of the two sliding grooves. The two magnetic blocks are respectively located at the center of the upper and lower end faces of the fixed block and are fitted and connected to the four sliding grooves. The four magnetic blocks are respectively located at the center of the upper inner wall of the two upper sliding grooves and the center of the lower inner wall of the two lower sliding grooves, and are attracted to each other by the two magnetic blocks. The four magnetic blocks are slidably connected to the four sliding grooves.

[0008] The above technical solution allows for sliding connection between the magnetic block and the sliding groove, and then connecting the fixed block and the sliding groove together. This enables the size of the plate to be adjusted according to the installation needs of the staff, avoiding installation incompatibility that could affect installation efficiency, thereby improving the flexibility and practicality of the device. Furthermore, the mutual attraction between the magnetic block and the magnetic suction block ensures its fixation with the fixed block.

[0009] Furthermore, the heat dissipation device includes a heat transfer base, multiple fins, multiple heat pipes, and a heat absorption plate. The heat transfer base is located at the center of the front end face of the plate. The multiple fins are arranged horizontally at the center of the front end face of the heat transfer base. The heat absorption plate is located at the center of the rear inner wall of the plate. The multiple heat pipes are located at the center of the front end face of the heat absorption plate, and their ends pass through the rear inner wall of the plate to the front end face of the plate. The multiple heat pipes are fixedly connected to the heat transfer base.

[0010] The above technical solution absorbs heat from the four plates, conducts the heat to the heat transfer base via heat pipes, absorbs the heat through fins, and achieves heat dissipation through contact with air. This effectively dissipates heat from the four plates and increases the surface contact with the surrounding environment, allowing for rapid transfer of internal heat to the external environment. This improves heat dissipation efficiency and the reliability and lifespan of electronic components.

[0011] Furthermore, the four mounting holes respectively penetrate the four front ends of the plate and extend to the rear inner wall of the plate;

[0012] The above technical solution, with its mounting holes, makes it easy for staff to install.

[0013] Furthermore, the eight grooves respectively penetrate the rear end faces of the four plates and extend into the interior of the plates;

[0014] The above technical solution, through the passage of the slide and the sleeve of the fixing block, avoids the gap between the board and the electronic components after installation, thus avoiding affecting the shielding efficiency.

[0015] Furthermore, the materials of the plurality of antibacterial coatings are silver-based antibacterial agents;

[0016] The above technical solution utilizes an antibacterial coating made of silver-based antibacterial agent to effectively inhibit the growth of bacteria, viruses, and fungi, and to effectively reduce the number and growth rate of microorganisms. This improves the hygiene and safety standards of the equipment, reduces health risks caused by microorganisms, and ensures the electromagnetic shielding effectiveness and mechanical performance of the equipment.

[0017] This utility model has the following beneficial effects:

[0018] 1. In this utility model, when the metal shielding cover stamping part is used, the cooperation between the adjustment device and the slide groove enables the size of the plate to be adjusted according to the installation needs of the workers, avoiding the impact of installation efficiency due to mismatch, thereby improving the flexibility and practicality of the device.

[0019] 2. In this utility model, the heat dissipation device enables effective heat dissipation of the board and increases the surface contact with the surrounding environment, which can quickly conduct the heat generated inside to the external environment, thereby improving the heat dissipation efficiency and the reliability and lifespan of electronic components.

[0020] 3. In this utility model, the antibacterial coating made of silver-based antibacterial agent can effectively inhibit the growth of bacteria, viruses and fungi, and effectively reduce the number and growth rate of microorganisms, thereby improving the hygiene and safety standards of the equipment, reducing the health risks caused by microorganisms, and ensuring the electromagnetic shielding effectiveness and mechanical performance of the equipment. Attached Figure Description

[0021] Figure 1 This is a perspective view of a metal shielding cover stamping part proposed in this utility model;

[0022] Figure 2 This is a perspective view of a metal shielding cover stamping part proposed in this utility model from another angle;

[0023] Figure 3 This is a rear sectional view of a metal shielding cover stamping part proposed in this utility model;

[0024] Figure 4 This is a side sectional view of a metal shielding cover stamping part proposed in this utility model;

[0025] Figure 5 for Figure 3 Enlarged diagram of point A in the middle.

[0026] Legend:

[0027] 1. Plate body; 2. Mounting hole; 3. Slide groove; 4. Adjustment device; 401. Fixing block; 402. Slide groove; 403. Magnetic block; 404. Magnetic block; 5. Heat dissipation device; 501. Heat transfer base; 502. Fin; 503. Heat conduction pipe; 504. Heat absorption plate; 6. Antibacterial coating. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Reference Figure 1-5This utility model provides an embodiment of a metal shielding cover stamping part, comprising four plates 1 arranged in a rectangular pattern. Mounting holes 2 are provided on the upper and lower sides of the front face of the two upper plates 1 and on the lower side of the front face of the two lower plates 1. Sliding grooves 3 are provided on the upper and lower sides of the rear face of the four plates 1. Adjustment devices 4 are fitted inside each of the four sliding grooves 3. Through the cooperation between the adjustment devices 4 and the sliding grooves 3, the size of the plates 1 can be adjusted according to the installation needs of the workers, avoiding installation mismatches that affect installation efficiency, thereby improving the flexibility and practicality of the device. A heat dissipation device 5 is provided at the center of the front face of each of the four plates 1. The design of component 5 enables effective heat dissipation of board 1 and increases surface contact with the surrounding environment, allowing for rapid heat transfer from the interior to the exterior. This improves heat dissipation efficiency and enhances the reliability and lifespan of electronic components. Antibacterial coatings 6 are applied to the center of the front face of the four boards 1, the upper and lower faces of two boards 1 on one side, and the upper and lower faces and side walls of two boards 1 on the other side. These silver-based antibacterial coatings effectively inhibit the growth of bacteria, viruses, and fungi, reducing the number and growth rate of microorganisms. This improves the hygiene and safety standards of the equipment, reduces health risks caused by microorganisms, and ensures the electromagnetic shielding effectiveness and mechanical performance of the equipment.

[0030] The adjusting device 4 includes a fixed block 401, four sliding grooves 402, two magnetic blocks 403, and four magnetic blocks 404. The fixed block 401 is respectively fitted inside the two sliding grooves 3. The four sliding grooves 402 are respectively located at the center of the upper and lower inner walls of the two sliding grooves 3. The two magnetic blocks 403 are respectively located at the center of the upper and lower end faces of the fixed block 401 and are fitted and connected to the four sliding grooves 402. The four magnetic blocks 404 are respectively located at one side of the center of the upper inner wall of the two upper sliding grooves 402 and one side of the center of the lower inner wall of the two lower sliding grooves 402. Each of the four magnetic blocks 404 is attracted to the two magnetic blocks 403, and each of the four magnetic blocks 404 is slidably connected to the four sliding grooves 402. The magnetic blocks 404 are slidably connected to the sliding grooves 402, and the fixed block 401 is sleeved and connected to the sliding groove 3, so that the size of the plate 1 can be adjusted according to the installation needs of the staff, avoiding the impact of installation incompatibility on installation efficiency, thereby improving the flexibility and practicality of the device. The magnetic blocks 404 and the magnetic blocks 403 are attracted to each other, so that the fixed block 401 can be fixed.

[0031] The heat dissipation device 5 includes a heat transfer base 501, multiple fins 502, multiple heat pipes 503, and a heat absorption plate 504. The heat transfer base 501 is located at the center of the front end face of the plate 1. The multiple fins 502 are arranged horizontally at the center of the front end face of the heat transfer base 501. The heat absorption plate 504 is located at the center of the rear inner wall of the plate 1. The multiple heat pipes 503 are located at the center of the front end face of the heat absorption plate 504, and their ends penetrate the rear inner wall of the plate 1 to the front end face of the plate 1. The multiple heat pipes 503 are connected to the heat transfer base 501. The four plates 1 are fixedly connected and the heat is absorbed by the heat-absorbing plate 504. The heat is then conducted to the heat transfer base 501 by the heat-conducting pipe 503. The heat is then absorbed by the fins 502 and dissipated through contact with the air. This allows for effective heat dissipation of the four plates 1 and increases the surface contact with the surrounding environment, enabling the heat generated inside to be quickly transferred to the external environment. This improves the heat dissipation efficiency and the reliability and lifespan of the electronic components.

[0032] Four mounting holes 2 penetrate the front faces of the four plates 1 and extend to the inner rear wall of the plate 1, facilitating installation by the staff. Eight sliding grooves 3 penetrate the rear faces of the four plates 1 and extend to the interior of the plate 1. Through the penetration of the sliding grooves 3 and the fitting of the fixing block 401, gaps between the plate 1 and the electronic components after installation are avoided, which would affect the shielding efficiency. Multiple antibacterial coatings 6 are made of silver-based antibacterial agents. The antibacterial coatings 6 made of silver-based antibacterial agents can effectively inhibit the growth of bacteria, viruses and fungi, and effectively reduce the number and growth rate of microorganisms, thereby improving the hygiene and safety standards of the equipment, reducing the health risks caused by microorganisms, and ensuring the electromagnetic shielding effectiveness and mechanical performance of the equipment.

[0033] Working principle: When using the metal shielding cover stamping part, the magnetic block 404 slides between the magnetic block 404 and the sliding groove 402, and is then connected to the sliding groove 3 by the fixed block 401. This allows the size of the plate 1 to be adjusted according to the installation needs of the operator, avoiding installation incompatibility that affects installation efficiency, thereby improving the flexibility and practicality of the device. The magnetic block 404 and the magnetic suction block 403 attract each other to fix it to the fixed block 401. The mounting hole 2 facilitates the installation by the operator. Then, the heat absorption plate 504 absorbs the heat inside the four plates 1, and the heat is conducted to the heat transfer pipe 503. At the hot base 501, heat is absorbed by fins 502, and further dissipated through contact with air, thus effectively cooling the four plates 1. This increases the surface contact with the surrounding environment, allowing for rapid transfer of internally generated heat to the external environment, thereby improving heat dissipation efficiency and the reliability and lifespan of electronic components. Finally, an antibacterial coating 6 made of silver-based antibacterial agent effectively inhibits the growth of bacteria, viruses, and fungi, reducing the number and growth rate of microorganisms. This improves the hygiene and safety standards of the equipment, reduces health risks caused by microorganisms, and ensures the electromagnetic shielding effectiveness and mechanical performance of the equipment.

[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. 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 metal shielding cover stamping part, comprising four plates (1), wherein the four plates (1) are arranged in a rectangular configuration, characterized in that: Mounting holes (2) are provided on the upper and lower sides of the front face center of the two upper plates (1) and the lower side of the front face center of the two lower plates (1). Slide grooves (3) are provided on the upper side and the lower side of the center of the rear face of the four plates (1). Adjustment devices (4) are fitted inside the four slide grooves (3). Heat dissipation devices (5) are provided at the center of the front face of the four plates (1). Antibacterial coatings (6) are provided on the center of the front face of the four plates (1), the upper and lower ends and one side wall of the two plates (1) on one side, and the upper and lower ends and one side wall of the two plates (1) on the other side.

2. The metal shielding cover stamping part according to claim 1, characterized in that: The adjusting device (4) includes a fixed block (401), four sliding grooves (402), two magnetic blocks (403), and four magnetic blocks (404). The fixed block (401) is respectively fitted inside the two sliding grooves (3). The four sliding grooves (402) are respectively located at the center of the upper and lower inner walls of the two sliding grooves (3). The two magnetic blocks (403) are respectively located at the center of the upper and lower end faces of the fixed block (401) and are slidably connected to the four sliding grooves (402). The four magnetic blocks (404) are respectively located at the center of the upper inner wall of the two upper sliding grooves (402) and the center of the lower inner wall of the two lower sliding grooves (402) and are attracted to each other by the two magnetic blocks (403).

3. A metal shielding cover stamping part according to claim 1, characterized in that: The heat dissipation device (5) includes a heat transfer base (501), multiple fins (502), multiple heat pipes (503), and a heat absorption plate (504). The heat transfer base (501) is located at the center of the front end face of the plate (1). The multiple fins (502) are arranged horizontally at the center of the front end face of the heat transfer base (501). The heat absorption plate (504) is located at the center of the rear inner wall of the plate (1). The multiple heat pipes (503) are located at the center of the front end face of the heat absorption plate (504), and their ends pass through the rear inner wall of the plate (1) to the front end face of the plate (1). The multiple heat pipes (503) are fixedly connected to the heat transfer base (501).

4. A metal shielding cover stamping part according to claim 1, characterized in that: The four mounting holes (2) pass through the front end face of the four plates (1) and extend to the rear inner wall of the plates (1).

5. A metal shielding cover stamping part according to claim 1, characterized in that: The eight grooves (3) respectively penetrate the rear end face of the four plates (1) and extend into the interior of the plates (1).

6. A metal shielding cover stamping part according to claim 1, characterized in that: The materials of the multiple antibacterial coatings (6) are silver-based antibacterial agents.