Improved heat sink for a refrigerator

CN224607972UActive Publication Date: 2026-08-07临沂市交通制冷工程有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
临沂市交通制冷工程有限公司
Filing Date
2025-04-24
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]制冷机是将具有较低温度的被冷却物体的热量转移给环境介质从而获得冷量的机器,一般制冷机的散热风扇设置在顶端,使得风扇转动时可以将靠近于制冷机顶端的热量优先排出,导致制冷机底部热量排出效率变低,使得制冷机内部的的散热不均匀,从而影响制冷机内部元件的使用寿命,现有的制冷机散热装置在进行使用的过程中不方便进行底部散热工作和在使用的过程中不方便通过制冷机的四周进行辅助散热工作以及在使用的过程中无法对散热口进行灰尘遮挡的问题

Benefits of technology

1.本实用新型中,所述的制冷机主体,固定柱,横向固定框,纵向固定框以及遮挡片相互配合的设置,有利于在使用的过程中通过横向固定框和纵向固定框分别设置在制冷机主体的上端四周,方便在使用的过程中进行遮挡防护工作,同时防止灰尘进入制冷机主体的内部。

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Abstract

The utility model provides an improved refrigerating machine heat abstractor, including refrigerating machine main part, machine cabinet door, support leg, sliding ring, spring, can shelter and protect heat dissipation frame structure and can reinforce and store auxiliary frame structure and can plug in dust removal heat dissipation frame structure, refrigerating machine main part's front end hinged connection has machine cabinet door, refrigerating machine main part's bottom end four corner positions respectively bolted support leg, the utility model discloses refrigerating machine main part, machine cabinet door, support leg, sliding ring, spring, plug -in frame, push -and -pull link, screen and ventilation pipe intercoordination arrangement are favorable in the process of using through the ventilation pipe setting in the bottom end of refrigerating machine main part, the power that the fan work of being set up inside through the ventilation pipe in the process of heat dissipation is convenient, blows the gas of refrigerating machine main part bottom end and removes simultaneously and drives the gas of refrigerating machine main part all around to remove, is convenient for the purpose of improving heat dissipation effect.
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Description

Technical Field

[0001] This utility model belongs to the technical field of refrigeration equipment, and in particular relates to an improved refrigeration heat dissipation device. Background Technology

[0002] A refrigeration machine is a machine that transfers heat from a cooled object to the surrounding environment to obtain cooling capacity. Generally, the cooling fan of a refrigeration machine is located at the top, so that when the fan rotates, it can preferentially expel the heat near the top of the refrigeration machine, resulting in lower heat dissipation efficiency at the bottom of the refrigeration machine. This leads to uneven heat dissipation inside the refrigeration machine, which affects the service life of the internal components. Existing refrigeration machine heat dissipation devices also have problems such as inconvenience in bottom heat dissipation, inconvenience in auxiliary heat dissipation through the sides of the refrigeration machine, and inability to cover the heat dissipation vents with dust during use. Utility Model Content

[0003] To solve the above-mentioned technical problems, this utility model provides an improved heat dissipation device for a refrigeration unit. By improving the heat dissipation mechanism during use, it facilitates heat dissipation at the bottom of the refrigeration unit and provides auxiliary heat dissipation mechanisms around the refrigeration unit to improve the heat dissipation effect. In addition, a dustproof mechanism is provided to prevent dust from affecting the heat dissipation of the refrigeration unit.

[0004] An improved refrigeration unit heat dissipation device includes a refrigeration unit body, with a cabinet door hinged to the front end of the refrigeration unit body; support legs are bolted to the four corners of the bottom end of the refrigeration unit body; sliding rings are slidably sleeved on the outer walls of the support legs; and springs are sleeved on the lower part of the outer walls of the support legs. The device is characterized by having a shielding and protective heat dissipation frame structure connected to the upper end of the refrigeration unit body; reinforcement and storage auxiliary frame structures are respectively provided at the left and right ends of the refrigeration unit body; and a dust-removing heat dissipation frame structure is provided at the middle of the bottom end of the refrigeration unit body.

[0005] Preferably, the shieldable heat dissipation frame structure includes fixed columns, and a horizontal fixing frame is fixed between the fixed columns by horizontal bolts; a vertical fixing frame is fixed between the fixed columns by vertical bolts; and the upper ends of the fixed columns are respectively bolted to the four corners of the bottom end of the shielding plate.

[0006] Preferably, the reinforceable storage auxiliary frame structure includes a connecting frame, with a connector strip inserted into the upper end of the connecting frame; an inverted T-shaped diversion pipe passes through the middle of the connector strip; a separation plate is bolted to the bottom of the connecting frame from front to back; the bottom ends of storage tubes are respectively inserted into the bottom of the connecting frame; and an auxiliary frame is bolted to the right end of the connecting frame.

[0007] Preferably, the pluggable dust removal and heat dissipation frame structure includes a pluggable frame, with push-pull rods bolted to the middle positions of the front and rear ends of the pluggable frame; mesh sheets are bolted to the inner walls of the upper and lower ends of the pluggable frame; and ventilation pipes are bolted to the interior of the pluggable frame from front to back.

[0008] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. In this utility model, the refrigeration unit body, fixing column, horizontal fixing frame, vertical fixing frame and shielding plate are arranged in a cooperative manner, which is beneficial to the use of the horizontal fixing frame and the vertical fixing frame respectively set around the upper part of the refrigeration unit body, so as to facilitate shielding and protection during use, and at the same time prevent dust from entering the interior of the refrigeration unit body.

[0009] 2. In this utility model, the refrigeration unit body, connecting frame, plug strip, inverted T-shaped diverter pipe, separation plate, storage pipe and auxiliary frame are arranged in a cooperative manner, which is beneficial to add refrigerant inside the storage pipe during use, so as to facilitate the purpose of heat dissipation of the refrigeration unit body during operation.

[0010] 3. In this utility model, the coordinated arrangement of the refrigeration unit body, cabinet door, support legs, sliding ring, spring, plug-in frame, push-pull rod, mesh, and ventilation pipe facilitates the use of the ventilation pipe located at the bottom of the refrigeration unit body. During heat dissipation, the power generated by the fan inside the ventilation pipe blows the air at the bottom of the refrigeration unit body, moving the air around the refrigeration unit body and improving the heat dissipation effect. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the structure of this utility model.

[0012] Figure 2 This is a schematic diagram of the structure of the shieldable and protective heat dissipation rack of this utility model.

[0013] Figure 3 This is a structural schematic diagram of the reinforced storage auxiliary frame structure of this utility model.

[0014] Figure 4 This is a schematic diagram of the pluggable dust removal and heat dissipation frame structure of this utility model.

[0015] In the picture: 1. Refrigeration unit body; 2. Cabinet door; 3. Support leg; 4. Sliding ring; 5. Spring; 6. Protective heat dissipation rack structure; 61. Fixed column; 62. Horizontal fixed frame; 63. Vertical fixed frame; 64. Shielding plate; 7. Reinforced storage auxiliary rack structure; 71. Connecting frame; 72. Insert strip; 73. Inverted T-shaped diversion pipe; 74. Separation plate; 75. Storage pipe; 76. Auxiliary frame; 8. Plug-in dust removal heat dissipation rack structure; 81. Plug-in frame; 82. Push-pull rod; 83. Mesh panel; 84. Ventilation pipe. Detailed Implementation

[0016] The present invention will now be described in detail with reference to the accompanying drawings, as shown below. Figure 1 and attached Figure 2 As shown, an improved refrigeration unit heat dissipation device includes a refrigeration unit body 1, a cabinet door 2, support legs 3, sliding rings 4, springs 5, a protective heat dissipation frame structure 6, a reinforced storage auxiliary frame structure 7, and a pluggable dust-removing heat dissipation frame structure 8. The front end of the refrigeration unit body 1 is hinged to the cabinet door 2; support legs 3 are bolted to the four corners of the bottom end of the refrigeration unit body 1; sliding rings 4 are slidably sleeved on the outer wall of the support legs 3; springs 5 ​​are sleeved on the lower part of the outer wall of the support legs 3; the upper end of the refrigeration unit body 1 is connected to the protective heat dissipation frame structure 6; reinforced storage auxiliary frame structures 7 are respectively provided at the left and right ends of the refrigeration unit body 1; and a pluggable dust-removing heat dissipation frame structure 8 is provided at the middle position of the bottom end of the refrigeration unit body 1. The aforementioned shieldable and protective heat dissipation frame structure 6 includes fixed columns 61, horizontal fixed frames 62, vertical fixed frames 63, and shielding plates 64. The horizontal fixed frames 62 are fixed to the fixed columns 61 with horizontal bolts; the vertical fixed frames 63 are fixed to the fixed columns 61 with vertical bolts; the upper ends of the fixed columns 61 are respectively bolted to the four corners of the bottom end of the shielding plates 64. In use, the refrigerator body 1 is fixed in a suitable position, and an external power supply is connected using an external wire. Then, the fixed columns 61 are respectively bolted to the top of the refrigerator body 1. The horizontal fixed frames 62 and the vertical fixed frames 63 are set around the upper end of the refrigerator body 1 to facilitate shielding and protection during use, preventing dust from entering the interior of the refrigerator body 1 during use.

[0017] In this implementation plan, in conjunction with the appendix Figure 3As shown, the reinforceable storage auxiliary frame structure 7 includes a connecting frame 71, a connector strip 72, an inverted T-shaped diversion pipe 73, a separation plate 74, a storage pipe 75, and an auxiliary frame 76. The connector strip 72 is inserted into the upper end of the connecting frame 71; the inverted T-shaped diversion pipe 73 passes through the middle of the connector strip 72; the separation plate 74 is bolted to the bottom of the connecting frame 71 from front to back; the bottom of the storage pipe 75 is inserted into the bottom of the connecting frame 71; and the auxiliary frame 76 is bolted to the right end of the connecting frame 71. During heat dissipation, the connecting frame 71 is bolted to both ends of the refrigerator body 1, and then connected to the storage pipe 75 via the inverted T-shaped diversion pipe 73. An appropriate amount of refrigerant is added into the storage pipe 75, and the storage pipe 75 is cooled down. A fan installed inside the auxiliary frame 76 blows air to the left and right ends of the refrigerator body 1, facilitating heat dissipation during the heat dissipation process.

[0018] In this implementation plan, in conjunction with the appendix Figure 4 As shown, the pluggable dust removal and heat dissipation frame structure 8 includes a pluggable frame 81, a push-pull rod 82, a mesh 83, and a ventilation pipe 84. The push-pull rod 82 is bolted to the middle of the front and rear ends of the pluggable frame 81, respectively. The mesh 83 is bolted to the inner walls of the upper and lower ends of the pluggable frame 81, respectively. The ventilation pipe 84 is bolted to the inside of the pluggable frame 81 from front to back. When dissipating heat, the fan installed inside the ventilation pipe 84 is connected to an external power source using an external wire. Then, the power generated by the fan inside the ventilation pipe 84 blows air onto the bottom of the refrigerator body 1, while simultaneously moving the air at the bottom and around the refrigerator body 1 upwards, thereby completing the heat dissipation work of the refrigerator body 1.

[0019] In this embodiment, specifically, the upper end of the refrigerator body 1 is provided with heat dissipation holes from left to right; the upper end of the spring 5 is set at the bottom end of the sliding ring 4 and is in contact with it.

[0020] In this embodiment, specifically, stainless steel mesh is bolted to the inner walls of the horizontal fixing frame 62 and the vertical fixing frame 63.

[0021] In this embodiment, specifically, the bottom end of the fixing column 61 is bolted to the top four corners of the refrigeration unit body 1.

[0022] In this embodiment, specifically, the plug-in strip 72 is a T-shaped stainless steel strip; the upper end of the storage tube 75 is threadedly connected to the bottom end of the inverted T-shaped diversion tube 73 and connected in a continuous manner; the connecting frame 71 and the plug-in strip 72 are bolted together; and the fan is bolted inside the auxiliary frame 76.

[0023] In this embodiment, specifically, the connecting frame 71 is bolted to the left and right ends of the refrigeration unit body 1.

[0024] In this embodiment, specifically, the mesh 83 is made of stainless steel and two are provided; a fan is bolted to the middle position of the ventilation pipe 84; and a reinforcing rod is bolted to the bottom of the inner wall of the plug frame 81 from left to right.

[0025] In this embodiment, specifically, the plug-in frame 81 is plugged into the middle of the bottom end of the refrigerator body 1; the plug-in frame 81 is set at the upper end of the sliding ring 4 and is in contact with it.

[0026] Working principle In this invention, during use, the refrigeration unit 1 is fixed in a suitable position, and an external power supply is connected using an external wire. Then, the fixing posts 61 are bolted to the top of the refrigeration unit 1. A horizontal fixing frame 62 and a vertical fixing frame 63 are positioned around the upper perimeter of the refrigeration unit 1 to facilitate shielding and protection during use, preventing dust from entering the interior of the refrigeration unit 1. During heat dissipation, the connecting frame 71 is bolted to both ends of the refrigeration unit 1, and then connected to the storage pipe 75 via an inverted T-shaped diversion pipe 73, discharging heat to the storage pipe. An appropriate amount of refrigerant is added inside pipe 75. The refrigerant is cooled through the storage pipe 75 and blown to the left and right ends of the main body 1 by a fan inside the auxiliary frame 76. This facilitates heat dissipation. During heat dissipation, the fan inside the ventilation pipe 84 is connected to an external power source via an external wire. The fan generates power to blow air onto the bottom of the main body 1, causing the air at the bottom and around the main body 1 to move upwards, thus completing the heat dissipation of the main body 1.

[0027] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solution described in this utility model, or by designing a similar technical solution inspired by the technical solution of this utility model, falls within the protection scope of this utility model.

Claims

1. An improved refrigeration heat dissipation device, comprising a refrigeration unit body (1), wherein the front end of the refrigeration unit body (1) is hinged to an organic cabinet door (2); support legs (3) are bolted to the four corners of the bottom end of the refrigeration unit body (1); a sliding ring (4) is slidably sleeved on the outer wall of the support leg (3); and a spring (5) is sleeved on the lower part of the outer wall of the support leg (3); characterized in that, The improved refrigeration heat dissipation device has a heat dissipation frame structure (6) that can be shielded and protected at the upper end of the refrigeration body (1); a reinforcement storage auxiliary frame structure (7) is provided at the left and right ends of the refrigeration body (1); and a dust removal heat dissipation frame structure (8) that can be plugged in is provided at the middle position of the bottom end of the refrigeration body (1).

2. The improved refrigeration device as described in claim 1, characterized in that, The shieldable heat dissipation frame structure (6) includes fixed columns (61), and a horizontal fixed frame (62) is fixed between the fixed columns (61) by horizontal bolts; a vertical fixed frame (63) is fixed between the fixed columns (61) by vertical bolts; and the upper ends of the fixed columns (61) are respectively bolted to the four corners of the bottom end of the shielding plate (64).

3. The improved refrigeration device as described in claim 1, characterized in that, The reinforceable storage auxiliary frame structure (7) includes a connecting frame (71), with a connector strip (72) inserted into the upper end of the connecting frame (71); an inverted T-shaped diversion pipe (73) passes through the middle of the connector strip (72); a separation plate (74) is bolted to the bottom of the connecting frame (71) from front to back; the bottom of the storage tube (75) is inserted into the bottom of the connecting frame (71); and an auxiliary frame (76) is bolted to the right end of the connecting frame (71).

4. The improved refrigeration device as described in claim 1, characterized in that, The pluggable dust removal and heat dissipation frame structure (8) includes a pluggable frame (81), and push-pull rods (82) are bolted to the middle positions of the front and rear ends of the pluggable frame (81); mesh sheets (83) are bolted to the inner walls of the upper and lower ends of the pluggable frame (81); and ventilation pipes (84) are bolted to the inside of the pluggable frame (81) from front to back.

5. The improved refrigeration device as described in claim 2, characterized in that, The bottom end of the fixed column (61) is bolted to the top four corners of the main body of the refrigeration unit (1).

6. The improved refrigeration device as described in claim 3, characterized in that, The connecting frame (71) is bolted to the left and right ends of the refrigeration unit body (1).

7. The improved refrigeration device as described in claim 4, characterized in that, The plug-in frame (81) is plugged into the middle of the bottom end of the refrigerator body (1); the plug-in frame (81) is set at the upper end of the sliding ring (4) and is in contact with it.