Heat dissipation water discharge leveling jig

By introducing a snap-fit ​​structure between the buckle plate and the side plate and an insertion structure between the recess and the cavity in the cooling water drain leveling fixture, the problem of insufficient reinforcement at the edge of the cooling water drain is solved, and the flat restoration and stable use of the cooling water drain are achieved.

CN224542905UActive Publication Date: 2026-07-24HUIZHOU MEIJI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU MEIJI TECH CO LTD
Filing Date
2025-09-01
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The existing cooling water duct leveling fixtures lack reinforcement mechanisms at the edges, which makes the cooling water ducts prone to lateral deformation during use, affecting the heat dissipation effect.

Method used

A heat dissipation water drain leveling fixture was designed, which includes a support part, a pressure applying mechanism and a fixing part. The fixing part consists of a receiving part and a reinforcing part. By snapping the buckle plate with the side plate and inserting the concave block with the cavity, the load-bearing capacity of the edge is enhanced and the lateral deformation of the heat dissipation water drain is prevented.

Benefits of technology

It effectively prevents lateral deformation of the cooling water duct caused by reaction force, ensuring that it returns to flatness and improving heat dissipation effect and operational stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of leveling fixture, concretely is a kind of radiating water drain leveling fixture, including support part and be equipped with the pressure applying mechanism on support part, still include fixed part, the fixed part includes accommodating part and two reinforcing parts, two the reinforcing parts are equipped with accommodating part both sides, the accommodating part is used to hold radiating water drain, the reinforcing part is used to improve the strength of accommodating part side edge;The support part includes base, the base is fixedly provided with several support plates, the support plate is used to support fixed part, the base upper surface one side is also fixedly provided with support frame;The utility model is by being buckled in the baffle and being pasted on the baffle on both sides of the baffle;By inserting recessed block into corresponding cavity, the both ends of baffle are fixed on support block, so that baffle and edge board form a whole, improve the bearing capacity of edge board, prevent the bulging of edge board due to the reaction force of radiating water drain, cause radiating water drain to occur transverse deformation, so as to make it recover.
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Description

Technical Field

[0001] This utility model relates to the field of leveling fixtures, and in particular to a heat dissipation water drain leveling fixture. Background Technology

[0002] A radiator is a device used to absorb heat generated by equipment or components and dissipate it into the surrounding environment to maintain the normal operating temperature of the equipment. It is widely used in electronic equipment, automobiles, industrial machinery, HVAC systems, and other fields, and is a key component for ensuring equipment stability and extending its service life. The cooling water radiator is a crucial component of the radiator, primarily used to transfer heat from the heat source to the surrounding environment to achieve cooling. During transportation, installation, or use, the cooling water radiator is prone to deformation, affecting its heat dissipation effect. A cooling water radiator leveling fixture can correct deformed cooling water radiators, restoring them to a flat state. The deformed cooling water radiator is placed into the receiving groove of the leveling fixture, and pressure is applied to the groove to flatten the cooling water radiator. Multiple receiving grooves are arranged in parallel to accommodate multiple cooling water radiators, improving work efficiency.

[0003] However, most of the existing cooling water drain leveling fixtures do not have a reinforcing mechanism at the edge of the receiving groove. The internal receiving grooves are squeezed against each other, which can prevent lateral deformation, but the receiving grooves at the edge are prone to bulging outward due to the lack of a reinforcing mechanism, causing lateral deformation of the cooling water drain. Utility Model Content

[0004] The main purpose of this utility model is to provide a heat dissipation water drain leveling fixture to solve the problems raised in related technologies.

[0005] To achieve the above objectives, according to one aspect of the present invention, a cooling water drain leveling fixture is provided, comprising a support portion and a pressure applying mechanism disposed on the support portion, and a fixing portion. The fixing portion includes a receiving portion and two reinforcing portions, the two reinforcing portions being disposed on both sides of the receiving portion. Each reinforcing portion includes a buckle plate located outside the receiving portion. Edge strips are fixedly provided on both the upper and lower sides of the buckle plate, and the edge strips are respectively located on the upper and lower sides of the receiving portion. The receiving portion is used to hold the cooling water drain, and the reinforcing portion and the receiving portion simultaneously bear the downward pressure of the pressure applying mechanism.

[0006] Furthermore, the support includes a base, on which a plurality of support plates are fixedly mounted, the support plates being used to support the fixing part.

[0007] Furthermore, a bracket is fixedly provided on one side of the upper surface of the base. The bracket is in the shape of an inverted L and is used to install the pressure application mechanism.

[0008] Furthermore, the pressure applying mechanism includes a power unit and a squeezing unit. The power unit is located above the squeezing unit and is used to drive the squeezing unit to move up and down. The squeezing unit is used to squeeze the fixing unit.

[0009] Furthermore, the power unit includes a hydraulic cylinder, which is fixedly mounted on a bracket. A piston rod fixed at the bottom of the hydraulic cylinder passes through the bracket and is slidably connected to the bracket.

[0010] Furthermore, the extrusion section includes a pressure plate, which is fixedly disposed at the bottom end of the piston rod, and a pressure block is fixedly disposed at the bottom of the pressure plate.

[0011] Furthermore, the receiving part includes two parallel support blocks, with side plates on both sides between the two support blocks, and several parallel partitions inserted between the two support blocks. A receiving groove is formed between two adjacent partitions, and the receiving groove is used to place a heat dissipation water drain.

[0012] Furthermore, the height of the partition is less than the height of the support block and equal to the height of the heat dissipation drain.

[0013] Furthermore, a number of connecting ears are fixedly provided on the inner side of each edge strip, and a protruding frame is fixedly provided at both ends of each buckle plate, with a concave block fixedly provided inside the protruding frame.

[0014] Furthermore, the size of the concave block is smaller than the size of the cavity, the size of the convex frame is larger than the size of the cavity, and the two edge strips are located on the upper and lower sides of the edge plate, respectively.

[0015] Compared with the prior art, the present invention has the following beneficial effects: This utility model secures the buckle plate to the side plate and attaches the top and bottom sides of the buckle plate to the side plate. By inserting the recessed block into the corresponding cavity, the two ends of the buckle plate are fixed to the support block, making the buckle plate and the side plate an integral whole. This improves the load-bearing capacity of the side plate and prevents the side plate from bulging outward due to the reaction force of the heat dissipation water drain, which would cause the heat dissipation water drain to deform laterally and thus be unable to return to its original shape. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall design of this utility model; Figure 2 This is a schematic diagram of the fixing part of this utility model.

[0017] Figure label: 1. Base; 2. Support plate; 3. Fixing part; 30. Recessed block; 31. Support block; 32. Cavity; 33. Partition plate; 34. Receiving groove; 35. Side plate; 36. Buckle plate; 37. Edge strip; 38. Connecting ear; 39. Protruding frame; 4. Pressure plate; 5. Pressure block; 6. Piston rod; 7. Hydraulic cylinder; 8. Bracket. Detailed Implementation

[0018] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.

[0019] This embodiment provides a leveling fixture for heat dissipation water channels, such as... Figure 1 As shown, it includes a support part and a pressure applying mechanism provided on the support part, and also includes a fixing part 3. The fixing part 3 includes a receiving part and two reinforcing parts. The two reinforcing parts are provided on both sides of the receiving part. The reinforcing part includes a buckle plate 36. The buckle plate 36 is located on the outside of the receiving part. The buckle plate 36 is fixedly provided with side strips 37 on both the upper and lower sides. The side strips 37 are respectively located on the upper and lower sides of the receiving part. The receiving part is used to hold the heat dissipation water drain. The reinforcing part and the receiving part together bear the downward pressure of the pressure applying mechanism.

[0020] The support unit includes a base 1, on which two support plates 2 are fixedly mounted. The support plates 2 support the fixing part 3. A bracket 8 is also fixedly mounted on one side of the upper surface of the base 1. The bracket 8 is inverted L-shaped and is used to support the pressure applying mechanism. A bottom plate is fixedly mounted on the top of the two support plates 2. The bottom plate faces the receiving groove 34 to prevent the heat dissipation water drain from falling out of the bottom of the receiving groove 34.

[0021] The pressure mechanism includes a power unit and a pressing unit. The power unit is located above the pressing unit and is used to drive the pressing unit to move up and down. The power unit includes a hydraulic cylinder 7, which is fixedly mounted on a bracket 8. A piston rod 6 fixed at the bottom of the hydraulic cylinder 7 passes through the bracket 8 and is slidably connected to the bracket 8. The pressing unit is used to press the fixing unit 3. The pressing unit includes a pressure plate 4, which is fixedly mounted at the bottom end of the piston rod 6. A pressure block 5 is fixedly mounted at the bottom of the pressure plate 4. The outer frame of the pressure block 5 is slightly smaller than the area enclosed by the inner edges of the support block 31 and the buckle plate 36, so that the pressure block 5 can enter the space enclosed by the support block 31 and the buckle plate 36 and thus contact the cooling water drain in the receiving groove 34. The outer frame of the pressure plate 4 is not smaller than the area enclosed by the outer edges of the support block 31 and the buckle plate 36, so that the pressure plate 4 presses on the support block 31 and the buckle plate 36. Hydraulic cylinder 7 is activated, and piston rod 6 extends, pushing pressure plate 4 and pressure block 5 downwards. Pressure block 5 presses onto the cooling water drain in receiving groove 34, forcing the cooling water drain into the receiving groove 34. After pressure block 5 completely presses the cooling water drain into the receiving groove 34, the cooling water drain returns to its original shape. At this time, pressure plate 4 presses on support block 31 and buckle plate 36 to prevent excessive pressure from pressure block 5 on the cooling water drain, which could cause deformation. After the cooling water drain is completely in receiving groove 34, pressure is maintained for a period of time. After the cooling water drain returns to its original shape, piston rod of hydraulic cylinder 7 is retracted, and pressure plate 4 and pressure block 5 move upwards, away from fixing part 3. Unscrew the screws on the connecting ear 38 and remove the connecting ear 38; then unscrew the screws between the side plate 35 and the support block 31 and remove the side plate 35; finally, unscrew the bolts between the support block 31 and the support plate 2, pull the support block 31 outwards to detach it from the partition plate 33, and remove the restored cooling water drain from the outside to the inside. When it is necessary to correct the deformed cooling water drain, assemble the fixing part 3 in the reverse order.

[0022] like Figure 2 As shown, the receiving part includes two parallel support blocks 31, with side plates 35 on both sides between the two support blocks 31, and several parallel partitions 33 inserted between the two support blocks 31. A receiving groove 34 is formed between two adjacent partitions 33, and the receiving groove 34 is used to place the heat dissipation water drain. The support blocks 31 are fixedly connected to the support plate 2 by bolts.

[0023] The height of the partition 33 is less than the height of the support block 31, but equal to the height of the cooling water drain. The partition 33, being the same height as the cooling water drain, provides lateral support to prevent lateral deformation when compressed. The deformed cooling water drains are placed sequentially into the receiving groove 34. If a drain cannot fully enter the receiving groove 34 due to deformation, its lower part is wedged between the corresponding partitions 33. After the cooling water drain is fully inside the receiving groove 34, its top is flush with the partition 33, ensuring that the pressure block 5 can fully press it into the receiving groove 34, thus restoring its original shape.

[0024] The reinforcement includes a buckle plate 36, with side strips 37 fixedly attached to both the upper and lower sides of the buckle plate 36. Several connecting ears 38 are fixedly attached to the inner side of each side strip 37. Protruding frames 39 are fixedly attached to both ends of the buckle plate 36, with recessed blocks 30 fixedly attached within each protruding frame 39. The connecting ears 38 have screw holes, and the side plate 35 also has corresponding screw holes aligned with the connecting ears 38. By snapping the buckle plate 36 onto the side plate 35 and attaching the upper and lower sides of the buckle plate 36 to the side plate 35, and by inserting the recessed blocks 30 into the corresponding cavities 32, the two ends of the buckle plate 36 are fixed to the support blocks 31. This forms a unified structure between the buckle plate 36 and the side plate 35, improving the load-bearing capacity of the side plate 35 and preventing the side plate 35 from bulging outwards due to the reaction force of the cooling water drain, which would cause lateral deformation of the cooling water drain and prevent it from returning to its original shape.

[0025] The size of the recess 30 is smaller than the size of the cavity 32, and the size of the convex frame 39 is larger than the size of the cavity 32. The two side strips 37 are located on the upper and lower sides of the side plate 35, respectively. When the buckle plate 36 is snapped onto the outside of the side plate 35, the side strips 37 are in close contact with the outer surface of the side plate 35, and at the same time, the recess 30 enters the corresponding cavity 32. The convex frame 39 is located at the end of the support block 31, fixing both ends of the buckle plate 36 to the support block 31. Then, screws are passed through the connecting ears 38 to fix the buckle plate 36 to the side plate 35, so that the buckle plate 36 and the side plate 35 form a whole, improving the load-bearing capacity of the side plate 35. The detachable buckle plate 36 is convenient for replacement.

[0026] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A water leveling fixture for a heat dissipation drain, comprising a support portion and a pressure applying mechanism disposed on the support portion, characterized in that, It also includes a fixing part (3), which includes a receiving part and two reinforcing parts. The two reinforcing parts are located on both sides of the receiving part. The reinforcing part includes a buckle plate (36), which is located outside the receiving part. The buckle plate (36) is fixed with side strips (37) on both the upper and lower sides of the buckle plate (36). The side strips (37) are located on the upper and lower sides of the receiving part, respectively. The receiving part is used to hold the heat dissipation water drain. The reinforcing part and the receiving part simultaneously bear the downward pressure of the pressure applying mechanism.

2. The heat dissipation water leveling fixture according to claim 1, characterized in that, The support includes a base (1), on which a plurality of support plates (2) are fixedly provided, and the support plates (2) are used to support the fixing part (3).

3. The heat dissipation water leveling fixture according to claim 2, characterized in that, A bracket (8) is also fixedly provided on one side of the upper surface of the base (1). The bracket (8) is in the shape of an inverted L and is used to install the pressure application mechanism.

4. The heat dissipation water leveling fixture according to claim 3, characterized in that, The pressure-applying mechanism includes a power unit and a squeezing unit. The power unit is located above the squeezing unit and is used to drive the squeezing unit to move up and down. The squeezing unit is used to squeeze the fixed part (3).

5. The cooling water leveling fixture according to claim 4, characterized in that, The power unit includes a hydraulic cylinder (7), which is fixedly mounted on a bracket (8). The piston rod (6) at the bottom of the hydraulic cylinder (7) passes through the bracket (8) and is slidably connected to the bracket (8).

6. The heat dissipation water drainage leveling fixture according to claim 5, characterized in that, The extrusion section includes a pressure plate (4), which is fixedly disposed at the bottom end of the piston rod (6), and a pressure block (5) is fixedly disposed at the bottom of the pressure plate (4).

7. The cooling water leveling fixture according to claim 1, characterized in that, The receiving part includes two parallel support blocks (31), with side plates (35) on both sides between the two support blocks (31), and several parallel partitions (33) inserted between the two support blocks (31). A receiving groove (34) is formed between two adjacent partitions (33), and the receiving groove (34) is used to place the heat dissipation water drain.

8. The heat dissipation water leveling fixture according to claim 7, characterized in that, The height of the partition (33) is less than the height of the support block (31) and equal to the height of the heat dissipation drain.

9. The cooling water leveling fixture according to claim 1, characterized in that, The inner side of each edge strip (37) is provided with several connecting ears (38), and both ends of each buckle plate (36) are provided with protruding frames (39), and the protruding frames (39) are provided with recessed blocks (30).

10. The heat dissipation water leveling fixture according to claim 9, characterized in that, The size of the concave block (30) is smaller than the size of the cavity (32), the size of the convex frame (39) is larger than the size of the cavity (32), and the two side strips (37) are located on the upper and lower sides of the side plate (35) respectively.