A heat dissipation assembly for an air cooler

By introducing heat exchange components such as heat pipes and heat dissipation fins into the air cooler, and combining them with evaporation components and liquid supply components, the problem of low heat dissipation efficiency of the air cooler is solved, and a more efficient heat dissipation effect is achieved.

CN224593795UActive Publication Date: 2026-08-04ALAR CITY HAOJINQIU AGRICULTURAL DEVELOPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ALAR CITY HAOJINQIU AGRICULTURAL DEVELOPMENT CO LTD
Filing Date
2025-09-09
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

The heat dissipation components of existing air-cooled machines use a single finned heat exchanger, resulting in low heat dissipation efficiency and affecting cooling efficiency.

Method used

It employs a heat exchanger consisting of heat pipes and heat dissipation fins, combined with an evaporator and a liquid supply assembly. It utilizes a cooling fan for air cooling, while heat conduction occurs through the contact between the metal cage of the evaporator and the heat dissipation fins, thereby improving heat dissipation efficiency.

Benefits of technology

It improves the heat dissipation efficiency of the air-cooled unit, enhances the overall heat dissipation performance of the heat dissipation components, reduces the impact of dust, and adapts to climate change.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to air cooling machine heat dissipation technical field especially, relates to a kind of heat dissipation components for air cooling machine.The heat dissipation components for air cooling machine include mounting seat, and the top of mounting seat is equipped with two groups of rectangular frame, and the outside of one group of rectangular frame is equipped with heat dissipation fan;Heat exchange element, is installed on two groups of rectangular frame, and heat exchange element includes heat pipe, heat pipe is equipped with two groups, two groups of heat pipe are respectively embedded on two groups of rectangular frame, and several heat dissipation metal sheets are evenly spaced and installed on heat pipe, and the end of two groups of heat pipe is communicated by conduit, and evaporative element for cooling is installed between two groups of rectangular frame on mounting seat, and evaporative element includes metal cage, recess is arranged in the both ends of metal cage and is connected with heat dissipation metal sheet, and water-absorbing fiber evaporator is embedded in metal cage, and one side of mounting seat is equipped with liquid supply assembly and is communicated with water-absorbing fiber evaporator.The heat dissipation components for air cooling machine provided by the utility model have the advantages of simple structure and high efficiency of heat dissipation.
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Description

Technical Field

[0001] This utility model relates to the field of heat dissipation technology for air-cooled machines, and in particular to a heat dissipation component for air-cooled machines. Background Technology

[0002] Air-cooled machines achieve cooling by using air as the cooling medium. Their core components include screw compressors, condensers, and evaporators. They utilize air for heat dissipation, have a compact structure, and do not require a dedicated machine room. These types of equipment rely on airflow to remove heat and are characterized by simple maintenance but are greatly affected by climate.

[0003] When existing air-cooled air coolers use finned heat exchangers in air-cooled condensers for heat conduction and exchange, the heat dissipation efficiency of a single finned heat exchanger is low, which affects the cooling efficiency of the air-cooled air cooler.

[0004] Therefore, it is necessary to provide a new heat dissipation component for air-cooled machines to solve the above-mentioned technical problems. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a heat dissipation component for air-cooled machines.

[0006] The heat dissipation component for air-cooled machines provided by this utility model includes: a mounting base, on the top of which two sets of rectangular frames are mounted, and a cooling fan is mounted on the outer side of one set of rectangular frames;

[0007] A heat exchanger is mounted on two sets of rectangular frames. The heat exchanger includes two sets of heat-conducting pipes, which are respectively embedded in the two sets of rectangular frames. Several heat dissipation metal fins are evenly spaced on the heat-conducting pipes. One end of the two sets of heat-conducting pipes is connected by a conduit. An evaporator for cooling is mounted on the mounting base between the two sets of rectangular frames. The evaporator includes a metal cage. The two ends of the metal cage have grooves for engaging with the heat dissipation metal fins. A water-absorbing fiber evaporator is embedded in the metal cage. A liquid supply assembly connected to the water-absorbing fiber evaporator is mounted on one side of the mounting base.

[0008] Preferably, dust filters are installed on the outer sides of both sets of rectangular frames and in the gap between the two sets of rectangular frames.

[0009] Preferably, the heat pipe is in a continuously curved S-shape.

[0010] Preferably, there are several metal cages, and the array of several metal cages is installed on the mounting base, and the top of the several metal cages is equipped with a water supply distributor that communicates with the liquid supply component.

[0011] Preferably, the water supply distributor includes a water guide pipe, which is mounted on the top of several metal cages, and the bottom end of the water guide pipe is connected to several branch pipes. A branch plate is installed at the bottom end of the several branch pipes. The branch plate has a liquid guiding cavity communicating with the branch pipes, and the bottom end of the branch plate has evenly distributed holes communicating with the liquid guiding cavity. One end of the water guide pipe is sealed, and the other end of the water guide pipe is connected to the liquid supply assembly.

[0012] Preferably, the liquid supply assembly includes a water tank, which is fixedly installed on the mounting base, and a water pump is installed on one side of the bottom of the water tank. The inlet end of the water pump is connected to the bottom of the inner cavity of the water tank, and the outlet end of the water pump is connected to the water guide pipe.

[0013] Preferably, the top of the water tank is provided with a liquid inlet pipe, and the water tank is provided with a liquid level sensor. The liquid level sensor is electrically connected to a control box, and the control box is electrically connected to a water pump.

[0014] Compared with related technologies, the heat dissipation component for air-cooled machines provided by this utility model has the following advantages:

[0015] This utility model provides a heat dissipation component for an air-cooled machine. It consists of heat exchange components set on two sets of rectangular frames. The heat exchange components use heat pipes and heat dissipation metal fins for basic air cooling by a cooling fan. Then, an evaporator is set between the two sets of rectangular frames. After the evaporator is supplied with liquid by a liquid supply component, it rapidly cools down the heat dissipation metal fins so that they can better exchange heat with the heat pipes, thereby improving the heat dissipation efficiency of the heat dissipation component. Furthermore, the metal cage of the evaporator has grooves that engage with the heat dissipation metal fins for contact heat conduction, further improving the heat conduction and heat dissipation efficiency. Attached Figure Description

[0016] Figure 1 A schematic diagram of a preferred embodiment of the heat dissipation component for an air-cooled machine provided by this utility model;

[0017] Figure 2 A schematic diagram of the structure of the mounting base provided by this utility model, on which two sets of rectangular frames are mounted;

[0018] Figure 3 A cross-sectional structural diagram of the liquid supply component and evaporator provided by this utility model;

[0019] Figure 4 A schematic diagram of the structure of the metal cage with an evaporator containing absorbent fibers provided by this utility model.

[0020] Figure 5 A schematic diagram of the structure of the liquid supply component provided by this utility model, which is connected to a water supply distributor.

[0021] The following are the labels in the diagram: 1. Mounting base; 2. Rectangular frame; 21. Dust filter; 3. Heat exchanger; 31. Heat pipe; 32. Heat dissipation fin; 4. Evaporator; 41. Metal cage; 42. Water-absorbing fiber evaporator; 401. Groove; 5. Liquid supply assembly; 51. Water tank; 511. Liquid inlet pipe; 52. Water pump; 53. Control box; 6. Water supply distributor; 61. Water guide pipe; 62. Water distribution pipe; 63. Water distribution plate; 601. Distribution hole; 7. Cooling fan. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0023] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.

[0024] Please see Figures 1 to 5 This utility model provides a heat dissipation component for an air-cooled machine, the heat dissipation component for the air-cooled machine includes:

[0025] Mounting base 1, the top of which is equipped with two sets of rectangular frames 2, and a cooling fan 7 is installed on the outer side of one set of rectangular frames 2;

[0026] A heat exchanger 3 is installed on two sets of rectangular frames 2. The heat exchanger 3 includes heat-conducting pipes 31. There are two sets of heat-conducting pipes 31, which are respectively embedded in the two sets of rectangular frames 2. Several heat dissipation metal plates 32 are evenly and equally spaced on the heat-conducting pipes 31. One end of the two sets of heat-conducting pipes 31 is connected by a conduit. An evaporator 4 for cooling is installed on the mounting base 1 between the two sets of rectangular frames 2. The evaporator 4 includes a metal cage 41. The two ends of the metal cage 41 are provided with grooves 401 that engage with the heat dissipation metal plates 32. A water-absorbing fiber evaporator 42 is embedded in the metal cage 41. A liquid supply assembly 5 that communicates with the water-absorbing fiber evaporator 42 is installed on one side of the mounting base 1.

[0027] It should be noted that: the mounting base 1 is installed at the air outlet end of the air cooler using screws, and the cooling fan 7 and liquid supply component 5 are electrically connected to the electronic control device of the air cooler. Then, the circulating liquid in the air cooler is connected to the two sets of heat pipes 31 to form a heat dissipation cycle. After connection, when the air cooler is started, the cooling fan 7 starts synchronously and blows air onto the heat exchange component 3. When blowing air, when the heat flows from the heat pipe 31, the heat exchanger metal plate 32 exchanges heat with the heat pipe 31. Then, the air blown by the cooling fan 7 continuously flows from the heat exchanger metal plate 32, thereby achieving air cooling. At the same time as air cooling, the liquid supply component 5 is controlled to continuously supply liquid to the water-absorbing fiber evaporator 42, so that the water-absorbing fiber evaporator 42 evaporates the liquid. Then, the groove 401 of the metal cage 41 contacts the heat exchanger metal plate 32 for heat conduction, further dissipating heat from the heat exchanger metal plate 32, thereby improving the overall heat dissipation efficiency of the heat dissipation component.

[0028] In the embodiments of this utility model, please refer to Figures 1 to 5 Dust filters 21 are installed on the outer sides of the two sets of rectangular frames 2 and in the gap between the two sets of rectangular frames 2.

[0029] It should be noted that the dust filter 21 is used to protect the heat exchanger 3 and evaporator 4 in the two sets of rectangular frames 2 from dust, so as to prevent dust from entering the two sets of rectangular frames 2 and sticking to the heat exchanger 3 and evaporator 4, thus affecting the heat conduction and heat dissipation of the heat exchanger 3 and evaporator 4.

[0030] The heat pipe 31 is in the shape of a continuously curved S-shape, which increases the length of the heat pipe 31 within the range defined by the rectangular frame 2, thereby increasing the heat exchange area of ​​the heat pipe 31 and improving its heat dissipation performance.

[0031] In the embodiments of this utility model, please refer to Figures 1 to 5 The metal cage 41 is provided in a plurality of arrays, and the plurality of metal cages 41 are mounted on the mounting base 1, and the top of the plurality of metal cages 41 is equipped with a water supply distributor 6 that is connected to the liquid supply assembly 5.

[0032] The water supply distributor 6 includes a water guide pipe 61, which is mounted on the top of several metal cages 41. The bottom end of the water guide pipe 61 is connected to several water distribution pipes 62. A water distribution plate 63 is installed at the bottom end of the several water distribution pipes 62. The water distribution plate 63 has a liquid guiding cavity that communicates with the water distribution pipes 62. The bottom end of the water distribution plate 63 has distribution holes 601 that communicate with the liquid guiding cavity. One end of the water guide pipe 61 is sealed, and the other end of the water guide pipe 61 is connected to the liquid supply component 5.

[0033] The liquid supply assembly 5 includes a water tank 51, which is fixedly installed on the mounting base 1. A water pump 52 is installed on one side of the bottom of the water tank 51. The inlet end of the water pump 52 is connected to the bottom of the inner cavity of the water tank 51, and the outlet end of the water pump 52 is connected to the water guide pipe 61.

[0034] It should be noted that when the liquid supply component 5 is in use, the control water pump 52 is started to deliver the pure water in the water tank 51 to the water guide pipe 61, and then flows through the water guide pipe 61 into several water distribution pipes 62, and then flows evenly into the water-absorbing fiber evaporator 42 through the distribution holes 601 at the bottom of the water distribution plate 63, so that the water-absorbing fiber evaporator 42 evaporates water to cool the heat dissipation metal plate 32.

[0035] In this embodiment: the top of the water tank 51 is provided with an inlet pipe 511, and the water tank 51 is provided with a liquid level sensor. The liquid level sensor is electrically connected to a control box 53, and the control box 53 is electrically connected to a water pump 52. In this way, the liquid level sensor monitors the water level in the water tank 51. When the water level is insufficient, an early warning is issued to remind the operator to replenish the water tank 51 in time through the inlet pipe 511. When the water in the water tank 51 is not replenished in time, the water pump 52 is controlled to stop to avoid damage to the water pump 52 due to dry running.

[0036] The working principle of the heat dissipation component for air-cooled machines provided by this utility model is as follows:

[0037] Mounting bracket 1 is installed at the air outlet of the air cooler using screws. The cooling fan 7 and liquid supply assembly 5 are electrically connected to the air cooler's electrical control device. The circulating liquid in the fan is then connected to the two sets of heat pipes 31 to form a heat dissipation cycle. After connection, when the air cooler starts, the cooling fan 7 starts synchronously and blows air onto the heat exchanger 3. When the air is blown, the heat flow is through the heat pipes 31, and the heat exchanger metal plate 32 exchanges heat with the heat pipes 31. Then, the air blown by the cooling fan 7 flows continuously through the heat dissipation metal plate 32, thereby achieving air cooling. At the same time as air cooling, the water pump 52 is started to transport the pure water in the water tank 51 to the water pipe 61. Then, the water flows through the water pipe 61 into several water distribution pipes 62, and then flows evenly into the water-absorbing fiber evaporator 42 through the distribution holes 601 at the bottom of the water distribution plate 63. This allows the water-absorbing fiber evaporator 42 to evaporate water and cool the heat dissipation metal plate 32.

[0038] The circuits and controls involved in this utility model are all existing technologies, and will not be described in detail here.

[0039] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A heat dissipation component for an air-cooled machine, comprising: Mounting base (1), the top of which is equipped with two sets of rectangular frames (2), one set of which is equipped with a cooling fan (7) on the outside; Its characteristic is that it further includes: A heat exchanger (3) is installed on two sets of rectangular frames (2), and the heat exchanger (3) includes a heat-conducting pipe (31). There are two sets of heat-conducting pipes (31), and the two sets of heat-conducting pipes (31) are respectively embedded on the two sets of rectangular frames (2). Several heat-dissipating metal plates (32) are evenly and equally spaced on the heat-conducting pipes (31), and one end of the two sets of heat-conducting pipes (31) is connected through a conduit. An evaporator (4) for cooling is installed on the mounting base (1) between the two sets of rectangular frames (2), and the evaporator (4) includes a metal cage (41). The two ends of the metal cage (41) are provided with grooves (401) that engage with the heat-dissipating metal plates (32). A water-absorbing fiber evaporator (42) is embedded in the metal cage (41), and a liquid supply component (5) connected to the water-absorbing fiber evaporator (42) is installed on one side of the mounting base (1).

2. The heat dissipation assembly for an air-cooled machine according to claim 1, characterized in that, Dust filters (21) are installed on the outer sides of the two sets of rectangular frames (2) and in the gap between the two sets of rectangular frames (2).

3. The heat dissipation assembly for an air-cooled machine according to claim 1, characterized in that, The heat pipe (31) is in a continuously curved S-shape.

4. The heat dissipation assembly for an air-cooled machine according to claim 1, characterized in that, The metal cage (41) is provided in a plurality of arrays, and the plurality of metal cages (41) are mounted on the mounting base (1), and the top of the plurality of metal cages (41) is equipped with a water supply distributor (6) that communicates with the liquid supply assembly (5).

5. The heat dissipation assembly for an air-cooled machine according to claim 4, characterized in that, The water supply distributor (6) includes a water guide pipe (61), which is mounted on the top of several metal cages (41). The bottom end of the water guide pipe (61) is connected to several water distribution pipes (62). The bottom end of several water distribution pipes (62) is equipped with a water distribution plate (63). The water distribution plate (63) has a liquid guiding cavity that communicates with the water distribution pipes (62). The bottom end of the water distribution plate (63) is evenly provided with distribution holes (601) that communicate with the liquid guiding cavity. One end of the water guide pipe (61) is sealed, and the other end of the water guide pipe (61) is connected to the liquid supply assembly (5).

6. The heat dissipation assembly for an air-cooled machine according to claim 5, characterized in that, The liquid supply assembly (5) includes a water tank (51), which is fixedly installed on the mounting base (1). A water pump (52) is installed on one side of the bottom of the water tank (51). The inlet end of the water pump (52) is connected to the bottom of the inner cavity of the water tank (51), and the outlet end of the water pump (52) is connected to the water guide pipe (61).

7. The heat dissipation assembly for an air-cooled machine according to claim 6, characterized in that, The top of the water tank (51) is provided with an inlet pipe (511), and a liquid level sensor is provided inside the water tank (51). The liquid level sensor is electrically connected to a control box (53), and the control box (53) is electrically connected to a water pump (52).