Mounting plate of heat dissipation piece

The design of the guide plate, sliding sleeve, support frame and latching assembly solves the problem of excessive pressure from the radiator on the motherboard, achieves stable support and installation reliability of the radiator, and ensures the safety of the motherboard.

CN223413678UActive Publication Date: 2025-10-03DONGGUAN MICROFIN HEAT DISSIPATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423005776.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-03
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

The increased size and weight of modern heat sinks put excessive pressure on the motherboard, potentially causing deformation or damage to the motherboard, and existing heat sink mounting plates are unable to provide stable support.

Method used

A mounting plate including a guide plate, a sliding sleeve, a support frame and a locking assembly is designed. The stable position of the radiator is ensured through sliding fit and precise fixation of the clamping rod and slot. The support is adjusted by the support plate and adjustment bolt, and the pressure is dispersed by the buffer pad and arc rod to achieve stable support.

Benefits of technology

It achieves stable support for the radiator, reduces pressure on the motherboard, improves the reliability and stability of the radiator installation, and avoids damage to the motherboard.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of heat dissipation pieces, in particular to a mounting plate of a heat dissipation piece. Comprising a buckling plate, the buckling plate is provided with a radiator used for CPU heat dissipation, the two sides of the top of the buckling plate are each provided with a vertical guide plate, the two guide plates are each provided with a sliding sleeve in a sliding mode, and a supporting frame used for supporting the radiator is arranged between the two sliding sleeves in a sliding mode; a clamping assembly used for fixing the position is arranged on the supporting frame. Through an ingenious sliding mechanism among the guide plate, the sliding sleeve and the supporting frame, flexible adjustment of the position of a supporting point of the radiator is achieved, especially when the radiator needs to be transversely placed, it is guaranteed that the radiator is comprehensively and stably supported through the design, and in addition, the clamping rods are accurately matched with the clamping grooves in the supporting frame, so that the supporting point position of the radiator is adjusted. The supporting frame is effectively fixed to the adjusted position, it is ensured that the position of the radiator is stable and unchanged in the using process, and reliability and stability of radiator installation are remarkably improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of heat sinks, and in particular to a mounting plate for a heat sink. Background Art

[0002] In computer systems, efficient CPU operation is crucial to overall system performance. However, CPU operation generates significant heat. If this heat cannot be dissipated effectively and promptly, the CPU will overheat, impacting performance and potentially causing permanent damage. Therefore, an efficient cooling system has become a crucial component of computer design.

[0003] The heat sink mounting plate, as a key component of the cooling system, not only ensures the heat dissipation effect, but also bears the important responsibility of protecting the motherboard from damage. Specifically, when the radiator is installed on the CPU, the weight of the radiator is usually borne by the socket or slot on the motherboard. However, with the improvement of CPU performance, some modern radiators are often designed to be more complex and larger to meet higher heat dissipation requirements. This has led to a significant increase in the size and weight of the radiator. In addition, some radiators need to be placed horizontally when used. If the motherboard alone is used to support such a heavy load, especially when the front end of the radiator is relatively large, it may put too much pressure on the motherboard, causing deformation or damage to the motherboard.

[0004] Therefore, in order to solve the above problems, it is urgent to provide a mounting plate for a heat sink that can provide a stable supporting function. Utility Model Content

[0005] In order to overcome the above-mentioned shortcomings in the prior art, the utility model provides a mounting plate for a heat sink that can provide a stable supporting function.

[0006] A mounting plate for a heat sink comprises a bottom frame, pillars, a snap-fit ​​plate, a radiator, a guide plate, a sliding sleeve, a support frame and a latching assembly. A pillar is provided on each of the four sides of the top of the bottom frame, a snap-fit ​​plate is provided between the top ends of the four pillars, a radiator for CPU heat dissipation is mounted on the snap-fit ​​plate, a vertical guide plate is provided on each of the two sides of the top of the snap-fit ​​plate, a sliding sleeve is slidably provided on each of the two guide plates, a support frame for supporting the radiator is slidably provided between the two sliding sleeves, and a latching assembly for fixing the position is provided on the support frame to stabilize the assembly of the radiator.

[0007] Furthermore, the locking assembly includes a mounting seat and a locking rod. Arranged locking slots are provided on the top surfaces of both sides of the support frame. A mounting seat is installed on the top of the sliding sleeve. A locking rod is rotatably provided on the mounting seat to engage with the locking slot on the same side.

[0008] Furthermore, a torsion spring is included, and a torsion spring is arranged between the clamping rod and the corresponding mounting seat.

[0009] Furthermore, it also includes an installation frame, a support plate and an adjustment bolt. An installation frame is also arranged between the sliding sleeves. A support plate that is in contact with the radiator is slidably arranged between the two sides of the installation frame. An adjustment bolt is arranged with a thread passing through the installation frame, and the end of the adjustment bolt is rotatably connected to the support plate.

[0010] Furthermore, a buffer pad is included, and a buffer pad for buffering pressure is also provided on the support frame.

[0011] Furthermore, it also includes an arc rod, and the arc rods that fit the radiator are symmetrically arranged on the support plate.

[0012] The beneficial effects are: 1. The utility model realizes the flexible adjustment of the position of the radiator support point through the ingenious sliding mechanism between the guide plate, the sliding sleeve and the support frame. Especially when the radiator needs to be placed horizontally, the design ensures that the radiator obtains comprehensive and stable support. In addition, the support frame is effectively fixed in the adjusted position through the precise cooperation between the card rod and the card slot on the support frame, ensuring that the radiator position remains stable during use, which significantly improves the reliability and stability of the radiator installation.

[0013] 2. The utility model uses the design of the support plate and the adjustment bolt to adjust the fit between the support plate and the radiator, thereby continuously maintaining close contact between the radiator and the support plate, helping to stabilize the support of the radiator and improve the overall stability. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.

[0015] Figure 2 It is a three-dimensional structural diagram of the bottom frame, pillars, buckle plates and other components of the utility model.

[0016] Figure 3 It is a three-dimensional structural diagram of the guide plate, sliding sleeve, support frame and other components of the utility model.

[0017] Figure 4 It is a three-dimensional structural diagram of the components such as the clamping rod, torsion spring and clamping slot of the utility model.

[0018] Figure 5 It is a three-dimensional structural diagram of the components such as the installation frame, support plate and adjustment bolt of the utility model.

[0019] The names and serial numbers of the parts in the figure are: 1. Base frame, 2. Pillar, 3. Fastening plate, 4. Radiator, 5. Guide plate, 6. Sliding sleeve, 7. Support frame, 8. Mounting seat, 9. Clamping rod, 10. Torsion spring, 11. Slot, 12. Mounting frame, 13. Support plate, 14. Adjusting bolt, 15. Buffer pad, 16. Arc rod. DETAILED DESCRIPTION

[0020] The technical solution of the present utility model will be further described below with reference to the accompanying drawings.

[0021] Embodiment: A mounting plate for a heat sink, such as Figure 1-Figure 4 As shown, it includes a bottom frame 1, a pillar 2, a buckling plate 3, a radiator 4, a guide plate 5, a sliding sleeve 6, a support frame 7 and a clamping assembly. A pillar 2 is provided on each side of the top of the bottom frame 1. A buckling plate 3 is provided between the tops of the four pillars 2. The radiator 4 for CPU heat dissipation is installed on the buckling plate 3. The bottom frame 1 serves as the foundation of the entire structure, and then provides stable support through the pillars 2 on all sides. The buckling plates 3 are then placed at the top positions of the pillars 2 on all sides, thereby providing the main installation and support platform for the radiator 4, ensuring the stability and safety of the overall installation of the entire radiator 4. A vertical guide plate 5 is provided on each side of the top of the buckling plate 3. , a sliding sleeve 6 is slidably provided on each of the two guide plates 5. When the radiator 4 is in a horizontal assembly state, the sliding sleeve 6 operates in the front and rear directions on the corresponding guide plate 5, and a support frame 7 for supporting the radiator 4 is slidably provided between the two sliding sleeves 6. The sliding operation of the sliding sleeve 6 can adjust the position of the support frame 7 so that the bottom end of the support frame 7 is always placed directly below the radiator 4, ensuring that the chassis position of the radiator 4 can be stabilized, ensuring its installation stability and firmness, and a positioning component for fixing the position is provided on the support frame 7, thereby ensuring the position between the support frame 7 and the sliding sleeve 6 to stabilize the assembly of the radiator 4.

[0022] From then on, through the sliding cooperation between the above-mentioned support frame 7 and the sliding sleeve 6, the support frame 7 can serve as the chassis support of the radiator 4 to provide additional support for it, ensuring that when the radiator 4 is placed horizontally, the load-bearing weight between the bottom frame 1, the support 2 and the snap-fit ​​plate 3 can be reduced to share the weight of the radiator 4, thereby avoiding the occurrence of excessive load and pressure.

[0023] like Figure 4As shown, the locking assembly includes a mounting seat 8 and a locking rod 9. Arranged locking grooves 11 are provided on the top surfaces of the left and right sides of the support frame 7. The mounting seat 8 is fixedly installed on the top of the sliding sleeve 6. A locking rod 9 is rotatably provided on the mounting seat 8 to engage with the locking groove 11 on the same side. By allowing the locking rod 9 to rotate on the mounting seat 8, the locking rod 9 can be freely rotated up or down, thereby releasing or locking into the corresponding locking groove 11, thereby achieving the position fixation between the support frame 7 and the sliding sleeve 6.

[0024] like Figure 4 As shown, a torsion spring 10 is also included. A torsion spring 10 is provided between the clamping rod 9 and the corresponding mounting seat 8, which can provide the clamping rod 9 with the force required for reset rotation.

[0025] like Figure 5 As shown, it also includes a mounting frame 12, a support plate 13 and an adjusting bolt 14. The mounting frame 12 is further provided between the sliding sleeves 6. A support plate 13 that is in contact with the radiator 4 is slidably provided between the two sides of the mounting frame 12. An adjusting bolt 14 is provided with a thread passing through the mounting frame 12. The end of the adjusting bolt 14 is rotatably connected to the support plate 13. By rotating the adjusting bolt 14, the position between the support plate 13 and the radiator 4 can be fine-tuned, thereby adjusting the pressure distribution of the radiator 4 to provide additional required support.

[0026] like Figure 3 As shown, a buffer pad 15 is also included. The support frame 7 is also provided with a buffer pad 15 for buffering pressure, which is used to absorb and alleviate the vibration generated by operation and ensure the stability of the support frame 7.

[0027] like Figure 5 As shown, an arc rod 16 is also included. The arc rod 16 is symmetrically arranged on the support plate 13 and fits the radiator 4, which helps to disperse the pressure and avoid damage caused by local overpressure.

[0028] First, assemble the radiator 4 on the snap-fit ​​plate 3, and then assemble and combine it with the components to be installed through the bottom frame 1. Due to different usage conditions, the radiator 4 may be placed horizontally. Then push the sliding sleeve 6 to slide on the guide plate 5, so that the support plate 13 moves to a position where it can be in contact with the radiator 4. Twist the adjusting bolt 14 to push the support plate 13 to slide on the mounting frame 12, and then adjust the distance between the support plate 13 and the radiator 4, so that the radiator 4 can be cooperatively supported by the support plate 13 and the arc rods 16 on both sides. Then, move the clamping rods 9 on both sides to disengage them from the clamping slots 11, and the clamping rods 9 are on the corresponding mounting seats 8. The torsion spring 10 is then pushed to slide between the sliding sleeves 6. After the position of the support frame 7 is adjusted, ensure that the bottom end of the support frame 7 can be in contact with the bottom surface of the support. At the same time, the buffer pad 15 cushions the weight, thereby supporting and sharing the horizontal weight of the radiator 4, so that the weight of the radiator 4 is partially borne by the support frame 7 to reduce the burden on the bottom frame 1 and the buckle plate 3. Then, the clamping rods 9 on both sides are released, and the torsion spring 10 is reset. Then the clamping rod 9 is rotated and knocked down, so that it is stuck in the corresponding clamping groove 11, thereby fixing the position of the support frame 7 on the sliding sleeve 6.

[0029] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the present invention and are not intended to limit the scope of protection of the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solution of the present invention may be modified or replaced by equivalents without departing from the essence and scope of the technical solution of the present invention.

Claims

1. A mounting plate for a heat sink, comprising a bottom frame (1), pillars (2), a snap-fit ​​plate (3) and a radiator (4), wherein a pillar (2) is provided on each of the four sides of the top of the bottom frame (1), a snap-fit ​​plate (3) is provided between the top ends of the four pillars (2), and a radiator (4) for CPU heat dissipation is mounted on the snap-fit ​​plate (3); the radiator (4) is characterized in that: The invention also includes a guide plate (5), a sliding sleeve (6), a support frame (7) and a positioning assembly. A vertical guide plate (5) is provided on each of the two sides of the top of the buckle plate (3). A sliding sleeve (6) is slidably provided on the two guide plates (5). A support frame (7) for supporting the radiator (4) is slidably provided between the two sliding sleeves (6). A positioning assembly for fixing the position is provided on the support frame (7) to stabilize the assembly of the radiator (4).

2. A heat sink mounting plate according to claim 1, characterized in that: The locking assembly includes a mounting seat (8) and a locking rod (9); arranged locking grooves (11) are provided on the top surfaces of both sides of the support frame (7); a mounting seat (8) is installed on the top of the sliding sleeve (6); and a locking rod (9) is rotatably provided on the mounting seat (8) and is engaged with the locking groove (11) on the same side.

3. A heat sink mounting plate according to claim 2, characterized in that: It also includes a torsion spring (10), which is arranged between the clamping rod (9) and the corresponding mounting seat (8).

4. A heat sink mounting plate according to claim 3, characterized in that: The invention also includes a mounting frame (12), a support plate (13) and an adjusting bolt (14); a mounting frame (12) is further provided between the sliding sleeves (6); a support plate (13) abutting against the radiator (4) is slidably provided between the two sides of the mounting frame (12); an adjusting bolt (14) is provided through a thread on the mounting frame (12); and the end of the adjusting bolt (14) is rotatably connected to the support plate (13).

5. A heat sink mounting plate according to claim 4, characterized in that: A buffer pad (15) is also included, and the support frame (7) is also provided with a buffer pad (15) for buffering pressure.

6. A heat sink mounting plate according to claim 5, characterized in that: It also includes an arc-shaped rod (16), which is symmetrically arranged on the support plate (13) and fits the radiator (4).