Integrated vapor chamber

Through the integrated molding of the connecting structure and magnetic suction plate design, the problem of limited quantity of the temperature uniform plate during transportation is solved, efficient multi-plate stacking and transportation is achieved, and transportation efficiency and connection stability are improved.

CN223271728UActive Publication Date: 2025-08-26DONGGUAN RUIJIA NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422535629.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-08-26
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

The existing integrated molded temperature equalization plates need to be packed separately during transportation, and the transportation quantity is limited, which increases the process and reduces work efficiency, making it impossible to carry out large-scale transportation efficiently.

Method used

The plate body, installation groove, connection groove and connection slide rail are adopted as an integrated molding structure. The connecting groove and connection slide rail between adjacent plate bodies are connected to each other, increasing the connection stability during transportation, and the magnetic suction plate and removable connection hole design are designed to achieve convenient stacking and transportation.

Benefits of technology

Improves stacking and transportation efficiency of multiple temperature equalization plates, reduces the probability of movement or disengagement, reduces transportation costs, enhances connection stability and flexibility, and simplifies the installation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an integrated vapor chamber in the technical field of vapor chambers, which comprises a plate body and a mounting groove, a connecting assembly is arranged on the surface of the plate body, the connecting assembly comprises a connecting groove and a connecting slide rail, the plate body, the mounting groove, the connecting groove and the connecting slide rail are of an integrated structure, and the connecting slide rail and the connecting groove are of a clearance fit structure; the plate bodies, the mounting grooves, the connecting grooves and the connecting sliding rails are arranged to be of an integrally-formed structure, mutual restraining and mutual limiting effects can be conveniently achieved when the uniform-temperature plate is transported, and when another plate body of the same structure is used, the connecting grooves and the connecting sliding rails between every two adjacent plate bodies are connected, so that the uniform-temperature plate is convenient to transport. When the connecting sliding rail of one plate body slides into the connecting groove of the other plate body, the two plate bodies are mutually restrained and limited, and stacking and transportation of a plurality of uniform-temperature plates are facilitated. The transportation box carrying cost and the transportation box purchasing cost are reduced, the number of transportation at a time is increased, and therefore the transportation cost can be reduced, and the transportation efficiency can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of temperature averaging plates, in particular to an integrated temperature averaging plate. Background Art

[0002] A vapor chamber is a device used to maintain or regulate temperature by evenly distributing heat across its surface or within its interior. Vapor chambers are typically made from materials with good thermal conductivity, such as aluminum, copper, and other metals, or from specialized synthetic materials. They can be passive, relying solely on the thermal conductivity of the material to achieve temperature uniformity, or active, equipped with heating elements or cooling systems that precisely regulate temperature through electronic control. An integrated vapor chamber is a more compact design based on the existing vapor chamber. Compared to traditional heat sinks, an integrated vapor chamber offers better thermal conductivity and a thinner design, better adapting to the space constraints of compact electronic devices.

[0003] An existing Chinese patent with reference number CN114935272A discloses an integrated, additively manufactured heat spreader. The integrated heat spreader includes a cavity wall, cavity reinforcement columns, and a powder purge and exhaust inlet. The cavity wall is provided with a wall capillary wick, a tapered stacked reinforced capillary wick, and a porous capillary ring. A composite microgroove channel is provided beneath the tapered stacked reinforced capillary wick. A vacuum airtight chamber is formed within the cavity wall and filled with a low-boiling-point liquid working fluid. The cavity reinforcement columns are provided within the cavity wall, and the powder purge and exhaust inlet is provided on the cavity wall on the side of the vacuum airtight chamber. By metallurgically combining all components of the heat spreader, the contact thermal resistance is reduced. Based on diversified and flexible material selection, an adaptive design based on additive manufacturing technology is adopted, fully leveraging the technical advantages of additive manufacturing. This design features fewer processing steps, a simple process flow, a short processing cycle, low manufacturing costs, and reliable quality, meeting various environmental adaptability requirements.

[0004] Although this patent has the effect of reducing contact thermal resistance, it does not have the corresponding structure to assist in transportation. When the one-piece molded temperature equalizing plate needs to be transported, it needs to be packed individually in a box, and cotton or soft padding needs to be added to the box to ensure that it is not damaged. When the number of stacked items is large, due to the limited capacity of the transport vehicle, a passage for the transport personnel to walk needs to be reserved, so the number of items transported at one time is limited. During transportation, its structure needs to be further processed and improved, which increases the process and reduces work efficiency. For this reason, the inventors proposed an one-piece temperature equalizing plate to solve the technical problem of the one-piece molded temperature equalizing plate being easy to transport. Utility Model Content

[0005] The utility model aims to overcome the above-mentioned shortcomings and provide a technical solution that can solve the above-mentioned problems.

[0006] An integrated temperature equalizing plate comprises a plate body and a mounting groove, wherein the mounting groove is provided on the surface of the plate body, the mounting groove is in an inward concave shape, a connecting assembly is provided on the surface of the plate body, the connecting assembly comprises a connecting groove and a connecting slide rail, the plate body, the mounting groove, the connecting groove and the connecting slide rail are an integrally formed structure, the connecting groove is in an inward concave shape, the connecting groove is provided on the outer side surface of the plate body, the connecting slide rail is located at an end of the plate body opposite to the connecting groove, the connecting slide rail and the connecting groove have the same shape and size, and a clearance fit structure is formed between the connecting slide rail and the connecting groove;

[0007] The plate body, mounting groove, connecting groove and connecting slide rail are set as an integrally formed structure, so that the temperature equalizing plate can play a role of mutual restraint and mutual limitation during transportation. When another plate body of the same structure is used, the two adjacent plate bodies are connected to each other through the connecting groove and connecting slide rail. When the connecting slide rail of one plate body slides into the connecting groove of the other plate body, the two plate bodies play a role of mutual restraint and mutual limitation, which is convenient for the stacking and transportation of multiple temperature equalizing plates. This connection method can increase the connection stability between the two during transportation. At the same time, through the mutual limitation between the two, the probability of movement or separation from the placement position is reduced without affecting other parts of the plate body, which is convenient for users to carry and transport.

[0008] Furthermore, a magnetic plate is provided inside the mounting groove, and a detachable structure is provided between the magnetic plate and the mounting groove. One end of the mounting groove is a crescent groove, and a step shape is formed between the crescent groove and the mounting groove. When the magnetic plate is installed inside the mounting groove, the user can manually pick out the magnetic plate through the empty space of the crescent groove, so that the magnetic plate can be installed on another plate body, thereby playing a role of recycling.

[0009] Furthermore, a plurality of connection holes are provided on the surface of the plate body, which are concave in shape and are blind holes. The connection holes are rectangularly distributed on the surface of the plate body, and the spacing between two adjacent connection holes is equal. The design of rectangular distribution and equal spacing helps to evenly disperse the stress of the connection holes, reduce deformation or damage of the plate body caused by concentrated stress, simplify the installation process, and facilitate subsequent maintenance and replacement. The concave connection holes can better fix the connecting parts and improve the stability and reliability of the connection.

[0010] Furthermore, one end of the connecting hole is connected to a second plate body, the second plate body and the plate body are separated and independent of each other, and the second plate body is connected to the connecting hole through a connecting rod;

[0011] The second plate body is connected to the connecting hole through a connecting rod. This structure is flexible and adjustable. The separate structure allows the second plate body to be independently adjusted or replaced without changing the plate body, thereby increasing the adaptability and flexibility of the overall structure. In addition, this connection method is convenient for maintenance and transportation. When multiple temperature equalizing plates need to be stacked, the connection method of the connecting rod and the connecting hole structure can increase the connection stability between the two during transportation. At the same time, through the mutual limitation between the two, the probability of movement or separation from the placement position is reduced. Moreover, this setting can operate the second plate body alone without affecting other parts of the plate body, which is convenient for users to carry and transport.

[0012] Furthermore, the connecting rod and the connecting hole are coaxially arranged, and the connecting rod and the connecting hole are detachable structures and are clearance-fitted.

[0013] The coaxial setting between the connecting rod and the connecting hole ensures the concentricity between the two, thereby ensuring the accuracy and stability of the mechanical structure; the design of the detachable structure makes it easy to separate the connecting rod from the connecting hole when maintenance, replacement or transportation is required, thereby improving the maintainability and flexibility of the temperature distribution plate; the clearance fit setting allows a certain amount of movement space between the connecting rod and the connecting hole, which helps to reduce stress concentration caused by factors such as thermal expansion, manufacturing errors or assembly errors, thereby extending the service life of the components, and can absorb or compensate for these errors to a certain extent, ensuring smooth operation between the two during transportation.

[0014] Furthermore, a pressing groove is provided in the middle of the second plate body, the pressing groove is in an inward concave shape, an iron sheet is installed inside the pressing groove, the iron sheet and the pressing groove are interference fit, and the iron sheet and the second plate body are an integrally formed structure;

[0015] The use of an integrated structure of the iron sheet and the second plate can provide a more stable and durable connection. The integrated structure eliminates seams or welding points between the iron sheet and the second plate, reducing the risk of damage due to mechanical stress or environmental factors. In addition, since the iron sheet and the pressing groove are interference fit, this design ensures that the iron sheet is fixed very tightly in the pressing groove, thereby improving the stability and torsion resistance of the overall structure, helping to improve the overall strength and durability of the product, while facilitating the mutual attraction between the iron sheet and the magnetic plate to complete the magnetic connection.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: the plate body, the mounting groove, the connecting groove and the connecting slide rail are formed into an integral structure, so that the temperature-averaging plates can play a role of mutual restraint and mutual limitation during transportation. When another plate body with the same structure is used, the two adjacent plate bodies are connected to each other through the connecting groove and the connecting slide rail between the two adjacent plate bodies. When the connecting slide rail of one plate body slides into the connecting groove of the other plate body, the two plate bodies play a role of mutual restraint and mutual limitation, which facilitates the stacking and transportation of multiple temperature-averaging plates.

[0017] This connection method can increase the connection stability between the two during transportation, and at the same time, through the mutual restriction between the two, reduce the probability of movement or deviation from the placement position without affecting other parts of the board body, making it convenient for users to carry and transport. When several temperature equalizing plates are connected in a group of ten or a group of twenty, this structure can be combined with the existing boxing method to use large boxes for shipping, reducing the cost of carrying and purchasing transport boxes, and increasing the quantity of one shipment, so as to reduce transportation cost expenditure and improve transportation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a three-dimensional diagram of an integrated temperature distribution plate;

[0019] Figure 2 yes Figure 1 A partial enlarged schematic diagram;

[0020] Figure 3 yes Figure 1 A partial enlarged schematic diagram of B in the middle;

[0021] Figure 4 It is a three-dimensional diagram of the second plate in an integrated temperature equalizing plate;

[0022] In the figure: plate body -1, mounting groove -2, connecting groove -3, connecting slide rail -4, magnetic plate -5, crescent groove -6, connecting hole -7, second plate body -8, connecting rod -9, pressing groove -10, iron sheet -11. DETAILED DESCRIPTION

[0023] The present invention will be described in further detail below with reference to the accompanying drawings and specific implementations.

[0024] For this example, please refer to Figures 1-4, a specifically implemented integrated temperature equalizing plate includes a plate body 1 and a mounting groove 2, the mounting groove 2 is opened on the surface of the plate body 1, the mounting groove 2 is concave in shape, a connecting component is provided on the surface of the plate body 1, the connecting component includes a connecting groove 3 and a connecting slide rail 4, the plate body 1, the mounting groove 2, the connecting groove 3 and the connecting slide rail 4 are an integrally formed structure, the connecting groove 3 is concave in shape, the connecting groove 3 is opened on the outer side surface of the plate body 1, the connecting slide rail 4 is located at the end of the plate body 1 opposite to the connecting groove 3, the connecting slide rail 4 is consistent with the connecting groove 3 in shape and size, and a clearance fit structure is formed between the connecting slide rail 4 and the connecting groove 3;

[0025] The plate body 1, mounting groove 2, connecting groove 3 and connecting slide rail 4 are set as an integral structure, so that the temperature equalizing plate can play a role of mutual restraint and mutual limitation during transportation. When another plate body 1 with the same structure is used, the two adjacent plate bodies 1 are connected to each other through the connecting groove 3 and the connecting slide rail 4. When the connecting slide rail 4 of one plate body 1 slides into the connecting groove 3 of the other plate body 1, the two plate bodies 1 play a role of mutual restraint and mutual limitation, which is convenient for stacking and transportation of multiple temperature equalizing plates. This connection method can increase the connection stability between the two during transportation. At the same time, through the mutual limitation between the two, the probability of movement or separation from the placement position is reduced without affecting other parts of the plate body 1, which is convenient for users to carry and transport.

[0026] A magnetic plate 5 is provided inside the mounting groove 2, and a detachable structure is provided between the magnetic plate 5 and the mounting groove 2. One end of the mounting groove 2 is a crescent groove 6, and a step shape is formed between the crescent groove 6 and the mounting groove 2. When the magnetic plate 5 is installed inside the mounting groove 2, the user can manually pick out the magnetic plate 5 through the empty space of the crescent groove 6, so that the magnetic plate 5 can be installed on another plate body 1, which plays a role in recycling.

[0027] The surface of the plate body 1 is provided with a plurality of connection holes 7, which are concave in shape and are blind holes. The connection holes 7 are rectangularly distributed on the surface of the plate body 1, and the spacing between two adjacent connection holes 7 is equal. The design of rectangular distribution and equal spacing helps to evenly disperse the stress of the connection holes 7, reduce deformation or damage of the plate body 1 caused by concentrated stress, simplify the installation process, and facilitate subsequent maintenance and replacement. The concave connection holes 7 can better fix the connecting parts and improve the stability and reliability of the connection.

[0028] One end of the connecting hole 7 is connected to a second plate 8. The second plate 8 and the plate 1 are separated and independent of each other. The second plate 8 is connected to the connecting hole 7 via a connecting rod 9.

[0029] The second plate body 8 is connected to the connecting hole 7 through a connecting rod 9. This structure is flexible and adjustable. The separate structure allows the second plate body 8 to be independently adjusted or replaced without changing the plate body 1, thereby increasing the adaptability and flexibility of the overall structure. In addition, this connection method is convenient for maintenance and transportation. When multiple temperature equalizing plates need to be stacked, the connection method of the connecting rod 9 and the connecting hole 7 structure can increase the connection stability between the two during transportation. At the same time, through the mutual limitation between the two, the probability of movement or separation from the placement position is reduced. Moreover, this setting can operate the second plate body 8 alone without affecting other parts of the plate body 1, which is convenient for users to carry and transport.

[0030] The connecting rod 9 and the connecting hole 7 are coaxially arranged, and the connecting rod 9 and the connecting hole 7 are detachable and have a clearance fit.

[0031] The coaxial setting between the connecting rod 9 and the connecting hole 7 ensures the concentricity between the two, thereby ensuring the accuracy and stability of the mechanical structure; the design of the detachable structure makes it easy to separate the connecting rod 9 from the connecting hole 7 when maintenance, replacement or transportation is required, thereby improving the maintainability and flexibility of the temperature equalizing plate; the clearance fit setting allows a certain amount of movement space between the connecting rod 9 and the connecting hole 7, which helps to reduce stress concentration caused by factors such as thermal expansion, manufacturing errors or assembly errors, thereby extending the service life of the components, and can absorb or compensate for these errors to a certain extent, ensuring smooth operation between the two during transportation.

[0032] A pressing groove 10 is provided in the middle of the second plate 8. The pressing groove 10 is concave in shape. An iron sheet 11 is installed inside the pressing groove 10. The iron sheet 11 and the pressing groove 10 are interference fit. The iron sheet 11 and the second plate 8 are an integrally formed structure.

[0033] The setting of the iron sheet 11 and the second plate 8 as an integrally formed structure can provide a more stable and durable connection. The integrally formed structure eliminates seams or welding points between the iron sheet 11 and the second plate 8, reducing the risk of damage due to mechanical stress or environmental factors. In addition, since the iron sheet 11 and the pressing groove 10 are interference fit, this design can ensure that the iron sheet 11 is fixed very tightly in the pressing groove 10, thereby improving the stability and torsion resistance of the overall structure, helping to improve the overall strength and durability of the product, and at the same time facilitating the mutual attraction between the iron sheet 11 and the magnetic plate 5 to complete the magnetic connection.

[0034] The key points of the design of the present invention are that the plate body 1, the mounting groove 2, the connecting groove 3 and the connecting slide rail 4 are formed into an integral structure, so that the temperature-averaging plate can play a role of mutual restraint and mutual limitation during transportation. When another plate body 1 of the same structure is used, the two adjacent plate bodies 1 are connected to each other through the connecting groove 3 and the connecting slide rail 4. When the connecting slide rail 4 of one plate body 1 slides into the connecting groove 3 of the other plate body 1, the two plate bodies 1 play a role of mutual restraint and mutual limitation, which facilitates the stacking and transportation of multiple temperature-averaging plates.

[0035] This connection method can increase the connection stability between the two during transportation, and at the same time reduce the probability of movement or deviation from the placement position through mutual restriction between the two without affecting other parts of the board body 1, making it easier for users to carry and transport.

[0036] The operation process of the utility model is as follows: the two adjacent plate bodies 1 are connected to each other through the connecting groove 3 and the connecting slide rail 4. When the connecting slide rail 4 of one plate body 1 slides into the connecting groove 3 of the other plate body 1, the two plate bodies 1 play a role of mutual restraint and mutual limitation.

[0037] When multiple temperature equalizing plates need to be stacked, the connection method of the connecting rod 9 and the connecting hole 7 can be used to stack the second plate body 8 on the surface of the plate body 1, and connect them to each other through the connecting rod 9 and the connecting hole 7, thereby increasing the connection stability between the plate body 1 and the second plate body 8 during transportation. At the same time, through the mutual restriction between the two, the probability of movement or deviation from the placement position is reduced.

[0038] The iron sheet 11 and the magnetic plate 5 play a role in increasing the stability of the connection in this process. Since the iron sheet 11 and the second plate body 8 are an integrally formed structure, the risk of damage caused by mechanical stress or environmental factors is reduced. However, it also makes it impossible for the iron sheet 11 to be removed from the second plate body 8. Therefore, a crescent groove 6 is opened inside the mounting groove 2. When the magnetic plate 5 is installed inside the mounting groove 2, the user can manually pick out the magnetic plate 5 through the empty space of the crescent groove 6, so that the magnetic plate 5 can be installed on another plate body 1, which plays a role of recycling. The magnetic connection helps to improve the stability and torsion resistance of the overall structure, and at the same time prevents the probability of deviation or separation from the original placement position, further increasing the connection stability and facilitating delivery and transportation.

[0039] The above content is a further detailed description of the present invention in conjunction with specific preferred embodiments, and the specific implementation of the present invention cannot be considered to be limited to these descriptions. For those skilled in the art of the present invention, several simple deductions or substitutions can be made without departing from the concept of the present invention, and all of these should be considered as within the scope of protection of the present invention.

Claims

1. An integrated temperature equalizing plate, comprising a plate body and a mounting slot, characterized in that: The mounting groove is provided on the surface of the plate body, and the mounting groove is concave in shape. A connecting component is provided on the surface of the plate body, and the connecting component includes a connecting groove and a connecting slide rail. The plate body, the mounting groove, the connecting groove and the connecting slide rail are an integrally formed structure. The connecting groove is concave in shape, and the connecting groove is provided on the outer side surface of the plate body. The connecting slide rail is located at the end of the plate body opposite to the connecting groove. The connecting slide rail and the connecting groove have the same shape and size, and there is a clearance fit structure between the connecting slide rail and the connecting groove.

2. The integrated temperature vapor chamber according to claim 1, characterized in that: A magnetic plate is provided inside the mounting groove, and a detachable structure is formed between the magnetic plate and the mounting groove. One end of the mounting groove is a crescent groove, and a step shape is formed between the crescent groove and the mounting groove.

3. The integrated temperature vapor chamber according to claim 2, characterized in that: The surface of the plate body is provided with a plurality of connection holes, which are concave in shape and blind holes. The connection holes are rectangularly distributed on the surface of the plate body, and the spacing between two adjacent connection holes is equal.

4. The integrated temperature vapor chamber according to claim 3, characterized in that: One end of the connecting hole is connected to the second plate body. The second plate body and the plate bodies are separated and independent of each other. The second plate body is connected to the connecting hole through a connecting rod.

5. The integrated temperature vapor chamber according to claim 4, characterized in that: The connecting rod and the connecting hole are coaxially arranged, and the connecting rod and the connecting hole are a detachable structure and are clearance-fitted.

6. The integrated temperature vapor chamber according to claim 5, characterized in that: A pressing groove is provided in the middle of the second plate body, which is concave in shape. An iron sheet is installed inside the pressing groove. The iron sheet and the pressing groove are interference fit, and the iron sheet and the second plate body are an integrally formed structure.

Citation Information

Patent Citations

  • Integrally-formed vapor chamber based on additive manufacturing

    CN114935272A