Quakeproof and anti-cracking reinforced water cooling plate
By introducing elastic gaskets and shock absorbers into the water-cooled plate to absorb vibrations, and expansion joints and flexible joints to relieve thermal stress, combined with high-strength cover plates and side plates, the seismic and crack resistance problems of the water-cooled plate are solved, and the structural strength and heat dissipation stability are improved.
Patent Information
- Application Number
- CN202423140367.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Traditional water-cooled plates have poor seismic and crack resistance under vibration and temperature changes, and insufficient structural strength, which affects heat dissipation and service life.
Elastic gaskets and shock absorbers are used to absorb equipment vibration, expansion joints and flexible joints relieve thermal stress, and high-strength cover plates and side plates enhance structural strength. The modular design facilitates installation and maintenance.
It improves the seismic and crack resistance of the water-cooled plate, enhances the structural strength, and ensures heat dissipation stability and normal operation of the equipment in high-intensity environments.
Smart Images

Figure CN223798523U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water-cooled plate technology, specifically to a shockproof and crack-resistant reinforced water-cooled plate. Background Technology
[0002] In modern industrial equipment, water-cooled plates are widely used for heat dissipation of electronic devices.
[0003] However, the vibrations generated during equipment operation can cause unstable water flow inside traditional water-cooled plates, affecting heat dissipation. Thermal stress caused by temperature changes can lead to structural cracking, reducing their lifespan. Furthermore, under high-intensity operating environments, the structural strength of traditional water-cooled plates may be insufficient to support normal operation. Therefore, a shock-resistant and crack-resistant reinforced water-cooled plate is needed. Utility Model Content
[0004] The technical problem to be solved by this utility model is that the water-cooled plate has poor seismic performance, crack resistance and structural strength.
[0005] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows: a shockproof and crack-resistant reinforced water-cooled plate, comprising a water-cooled plate body, the water-cooled plate body being a hollow structure, having cooling water channels on the water-cooled plate body, an upper cover plate above the water-cooled plate body, a lower cover plate below the water-cooled plate body, side plates on both sides of the water-cooled plate body for engaging the upper and lower cover plates, and shockproof structures on the side of the upper and lower cover plates near the water-cooled plate body, the shockproof structures including elastic pads and shock absorbers, the elastic pads being located in the center of the wall of the upper and lower cover plates near the water-cooled plate body, and multiple shock absorbers being arranged around the elastic pads, the other ends of the elastic pads and shock absorbers being tightly attached to the outer wall of the water-cooled plate; a crack-resistant structure is provided on the water-cooled plate body, the crack-resistant structure including expansion joints and flexible joints, the expansion joints being located at the corners of the cooling water channels, and the flexible joints connecting adjacent cooling plate bodies.
[0006] As an improvement, the side plate is symmetrically provided with a set of slots that cooperate with the upper cover plate and the lower cover plate. The side plate is provided with multiple fastening bolts that are bolted to the upper cover plate and the lower cover plate, which facilitates the overall fastening operation of the device. The side plate can cooperate with the upper cover plate and the lower cover plate to improve the support strength.
[0007] As an improvement, the elastic pad is made of rubber material, the shock absorber is a spring shock absorber or a hydraulic shock absorber, the upper cover plate and the lower cover plate are connected to the cooling plate body by bolts through the shock absorber, the elastic pad is made of rubber material and is set on the upper and lower parts of the cooling plate body to absorb equipment vibration, and the shock absorber is used to further reduce vibration transmission.
[0008] As an improvement, the expansion joint is a bellows expansion joint or a spherical expansion joint, and the flexible joint is a rubber flexible joint or a metal flexible joint. The expansion joint is located at the corner of the cooling water channel to absorb thermal stress caused by temperature changes. The flexible joint connects adjacent cooling plate bodies to reduce the impact of thermal stress on the water-cooled plate structure.
[0009] As an improvement, the upper cover plate, lower cover plate, and side plates are all made of metal materials to enhance the structural strength of the water-cooled plate.
[0010] The advantages of this utility model compared with the prior art are: by setting elastic pads and shock absorbers, the impact of equipment vibration on water-cooled plates is effectively reduced, and the heat dissipation stability is improved;
[0011] The design of expansion joints and flexible joints can alleviate thermal stress caused by temperature changes and prevent cracking of the water-cooled plate structure;
[0012] The high-strength upper and lower cover plates significantly enhance the structural strength of the water-cooled plate, enabling it to adapt to high-intensity working environments.
[0013] The device adopts a modular design, and the connection of each component is simple and reliable, making it easy to install and maintain. Attached Figure Description
[0014] Figure 1 This is a perspective view of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0015] Figure 2 This is a three-dimensional view of the main body of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0016] Figure 3 This is a three-dimensional view of the top cover plate of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0017] Figure 4 This is a perspective view of the lower cover plate of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0018] Figure 5 This is a three-dimensional view of the side plate of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0019] Figure 6 This is an assembly diagram of a shockproof and crack-resistant reinforced water-cooled plate according to this utility model.
[0020] As shown in the figure: 1. Water-cooled plate body; 2. Cooling water channel; 3. Upper cover plate; 4. Lower cover plate; 5. Side plate; 6. Anti-vibration structure; 7. Elastic gasket; 8. Shock absorber; 9. Crack prevention structure; 10. Expansion joint; 11. Flexible joint; 12. Slot; 13. Fastening bolt. Detailed Implementation
[0021] The present invention will now be described in further detail with reference to the accompanying drawings.
[0022] Combined with appendix Figure 1-6 As shown, a shockproof and crack-resistant reinforced water-cooled plate includes a water-cooled plate body 1, which is a hollow structure. Cooling water channels 2 are provided on the water-cooled plate body 1. An upper cover plate 3 is provided above the water-cooled plate body 1, and a lower cover plate 4 is provided below the water-cooled plate body 1. Side plates 5 are provided on both sides of the water-cooled plate body 1 to engage the upper cover plate 3 and the lower cover plate 4. Shockproof structures 6 are provided on the side of the upper cover plate 3 and the lower cover plate 4 closest to the water-cooled plate body 1. It includes an elastic pad 7 and a shock absorber 8. The elastic pad 7 is made of rubber material, and the shock absorber 8 is a spring shock absorber 8 or a hydraulic shock absorber 8. The upper cover plate 3 and the lower cover plate 4 are connected to the cooling plate body by bolts through the shock absorber 8. The elastic pad 7 is located in the center of the side wall of the upper cover plate 3 and the lower cover plate 4 near the water-cooled plate body 1. Multiple shock absorbers 8 are arranged around the elastic pad 7. The other end of the elastic pad 7 and the shock absorber 8 are tightly attached to the outer wall of the water-cooled plate.
[0023] With the above structure, the upper cover plate 3 is placed close to the top surface of the water-cooled plate body 1, and the lower cover plate 4 is placed close to the top surface of the water-cooled plate body 1, so that the elastic pad 7 and the shock absorber 8 are close to the water-cooled plate body 1. Then, bolts are used to connect the shock absorber 8 to the water-cooled plate body 1, thus completing the anti-vibration operation of the water-cooled plate body 1. In use, the elastic pad 7 is set on the top and bottom of the cooling plate body to absorb equipment vibration, and the shock absorber 8 further reduces vibration transmission and improves the anti-vibration performance of the water-cooled plate body 1.
[0024] The water-cooled plate body 1 is provided with a crack-prevention structure 9, which includes an expansion joint 10 and a flexible joint 11. The expansion joint 10 is located at the corner of the cooling water channel 2, and the flexible joint 11 is connected to the adjacent cooling plate body. The expansion joint 10 is a bellows expansion joint 10 or a spherical expansion joint 10, and the flexible joint 11 is a rubber flexible joint 11 or a metal flexible joint 11.
[0025] With the above structure, the expansion joint 10 is fixed to the corner of the cooling water channel 2 by welding, and the flexible joint 11 is connected to the adjacent cooling plate body by flange connection. In use, the expansion joint 10 is set at the corner of the cooling water channel 2 to absorb the thermal stress caused by temperature changes, and the flexible joint 11 reduces the impact of thermal stress on the water-cooled plate structure and improves the crack resistance of the water-cooled plate body 1.
[0026] The side plate 5 is symmetrically provided with a set of slots 12 that cooperate with the upper cover plate 3 and the lower cover plate 4. The side plate 5 is provided with a plurality of fastening bolts 13 that are bolted to the upper cover plate 3 and the lower cover plate 4. The upper cover plate 3, the lower cover plate 4 and the side plate 5 are all made of metal materials.
[0027] With the above structure, after assembling the upper cover plate 3 and the lower cover plate 4, the side plate 5 is slid between the upper cover plate 3 and the lower cover plate 4 through the slot 12. The fastening bolts 13 are used to pass through the upper and lower parts of the side plate 5 to connect it to the upper cover plate 3 and the lower cover plate 4. The upper cover plate 3, the lower cover plate 4 and the side plate 5 work together to enhance the structural strength of the water-cooled plate.
[0028] In specific implementation of this utility model, firstly, the expansion joint 10 is fixed to the corner of the cooling water channel 2 by welding, and the flexible joint 11 is connected to the adjacent cooling plate body by flange connection to complete the anti-crack operation of the water-cooled plate body 1; the upper cover plate 3 is placed close to the top surface of the water-cooled plate body 1, and the lower cover plate 4 is placed close to the top surface of the water-cooled plate body 1, so that the elastic gasket 7 and the shock absorber 8 are close to the water-cooled plate body 1. Then, bolts are used to pass through the shock absorber 8 and bolt to connect it to the water-cooled plate body 1 to complete the anti-vibration operation of the water-cooled plate body 1; after assembling the upper cover plate 3 and the lower cover plate 4, the side plate 5 is slid between the upper cover plate 3 and the lower cover plate 4 through the slot 12, and fastening bolts 13 are used to pass through the side plate 5 from top to bottom to connect it to the upper cover plate 3 and the lower cover plate 4 to complete the reinforcement operation of the water-cooled plate body 1;
[0029] When in use, the upper cover plate 3, lower cover plate 4 and side plate 5 work together to enhance the structural strength of the water-cooled plate. The expansion joint 10 absorbs the thermal stress caused by temperature changes. The flexible joint 11 reduces the impact of thermal stress on the structure of the water-cooled plate and improves the crack resistance of the water-cooled plate body 1. The elastic gasket 7 is set on the upper and lower parts of the cooling plate body to absorb equipment vibration. The shock absorber 8 further reduces vibration transmission and improves the seismic performance of the water-cooled plate body 1.
[0030] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. An anti-vibration and anti-cracking reinforced water-cooled plate, comprising a water-cooled plate body (1), the water-cooled plate body (1) being a hollow structure, and a cooling water channel (2) being arranged on the water-cooled plate body (1), characterized in that: an upper cover plate (3) is arranged above the water-cooled plate body (1), a lower cover plate (4) is arranged below the water-cooled plate body (1), side plates (5) are arranged on both sides of the water-cooled plate body (1) to clamp the upper cover plate (3) and the lower cover plate (4), the upper cover plate (3) and the lower cover plate (4) are each provided with an anti-vibration structure (6) near a side wall of the water-cooled plate body (1), the anti-vibration structure (6) comprises an elastic gasket (7) and a shock absorber (8), the elastic gasket (7) is arranged at the center of the side wall of the water-cooled plate body (1) near the upper cover plate (3) and the lower cover plate (4), and a plurality of shock absorbers (8) are arranged around the elastic gasket (7), and the other ends of the elastic gasket (7) and the shock absorber (8) are tightly attached to the outer wall of the water-cooled plate; an anti-cracking structure (9) is arranged on the water-cooled plate body (1), the anti-cracking structure (9) comprises an expansion joint (10) and a flexible joint (11), the expansion joint (10) is arranged at a corner of the cooling water channel (2), and the flexible joint (11) connects adjacent water-cooled plate bodies. A set of clamping grooves (12) matched with the upper cover plate (3) and the lower cover plate (4) are symmetrically arranged on the side plates (5), and a plurality of fastening bolts (13) for bolt connection of the upper cover plate (3) and the lower cover plate (4) are arranged on the side plates (5).
2. The shockproof and crackproof reinforced water-cooled plate of claim 1, wherein: The elastic gasket (7) is made of rubber material, the shock absorber (8) is a spring shock absorber (8) or a hydraulic shock absorber (8), and the upper cover plate (3) and the lower cover plate (4) are connected to the water-cooled plate body by penetrating the shock absorber (8) through bolts.
3. The shockproof and crackproof reinforced water-cooled plate of claim 1, wherein: The expansion joint (10) is a corrugated pipe expansion joint (10) or a spherical expansion joint (10), and the flexible joint (11) is a rubber flexible joint (11) or a metal flexible joint (11).
4. The shockproof and crackproof reinforced water-cooled plate of claim 1, wherein: The upper cover plate (3), the lower cover plate (4) and the side plates (5) are all made of metal material.
5. The shockproof and crackproof reinforced water-cooled plate of claim 1, wherein: