A heat sink device having increased heat dissipation performance
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-17
- Publication Date
- 2026-08-11
AI Technical Summary
[0002]众所周知,农机散热器种类很多,农机散热器的进出水管位置受整机布局受限,不少散热器的进水管和出水管在散热器的中心线同一侧,这样散热器的水流动受影响,从而导致散热器的散热不均,影响散热器的散热性能
[0005]本实用新型的有益效果是:一种增加散热性能的散热器装置,在上水室内使用导流管与上水管连接,能使水流均匀分散地流进散热器芯体,增加散热性能。
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Figure CN224623585U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of radiators, especially agricultural machinery radiators, specifically a radiator device for increasing heat dissipation performance. Background Technology
[0002] As we all know, there are many types of agricultural machinery radiators. The position of the inlet and outlet pipes of agricultural machinery radiators is limited by the overall layout of the machine. Many radiators have their inlet and outlet pipes on the same side of the radiator's center line. This affects the water flow of the radiator, resulting in uneven heat dissipation and affecting the radiator's heat dissipation performance. Summary of the Invention
[0003] In view of the shortcomings of the prior art, this utility model provides a radiator device to increase heat dissipation performance.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A radiator device for increasing heat dissipation performance mainly consists of an upper water chamber, an upper water pipe, a guide pipe, a radiator core, a lower water chamber, and a lower water pipe. The upper water chamber is the chamber where water flows; the upper water pipe is assembled on one side of the upper water chamber; the guide pipe is a curved pipe with open ends, assembled in the upper water chamber, with one end connected to the upper water pipe and the other end leading into the upper water chamber; the radiator core is the core of the radiator, with one end connected to the upper water chamber and the other end connected to the lower water chamber; the lower water chamber is the chamber where water flows; the lower water pipe is assembled on one side of the lower water chamber. Typically, the water in the radiator flows from the upper water pipe into the upper water chamber, then from the upper water chamber into the radiator core, then into the lower water chamber, and finally out through the lower water pipe in the lower water chamber. When the inlet pipe of the upper water chamber and the outlet pipe of the lower water chamber are on the same side of the upper and lower water chambers, most of the water flows into the radiator core area near the inlet pipe and then flows out from the radiator core area near the outlet pipe. This results in very little water flow in the radiator core areas far from the inlet and outlet pipes, causing uneven water distribution within the radiator core, leading to uneven heat dissipation and reduced heat dissipation performance. Now, a guide pipe connects to the inlet pipe, introducing water into the upper water chamber. The water flows evenly along the guide pipe within the upper water chamber, smoothly into the radiator core, then into the lower water chamber, and finally collects at the outlet pipe before flowing out. This allows the water to flow evenly and dispersedly into the radiator core, achieving uniform heat dissipation and increasing the radiator's heat dissipation performance.
[0005] The beneficial effects of this utility model are: a radiator device that increases heat dissipation performance, which uses a guide pipe connected to the water supply pipe in the water supply chamber, can make the water flow evenly and dispersed into the radiator core, thereby increasing heat dissipation performance. Attached Figure Description
[0006] Figures 1-3 This is a schematic diagram of a radiator device for improving heat dissipation performance according to the present invention.
[0007] In the diagram: 1. Water inlet chamber, 2. Water inlet pipe, 3. Drainage pipe, 4. Radiator core, 5. Water outlet chamber, 6. Water outlet pipe. Detailed Implementation
[0008] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0009] like Figures 1-3 As shown, a radiator device for increasing heat dissipation performance mainly consists of an upper water chamber 1, an upper water pipe 2, a guide pipe 3, a radiator core 4, a lower water chamber 5, and a lower water pipe 6. The upper water chamber 1 is the chamber where water flows; the upper water pipe 2 is assembled on one side of the upper water chamber 1; the guide pipe 3 is a curved pipe with open ends, assembled inside the upper water chamber 1, with one end connected to the upper water pipe 2 and the other end leading into the upper water chamber 1; the radiator core 4 is the core of the radiator, with one end connected to the upper water chamber 1 and the other end connected to the lower water chamber 5; the lower water chamber 5 is the chamber where water flows; the lower water pipe 6 is assembled on one side of the lower water chamber 5. Normally, the water in the radiator flows from the upper water pipe 2 into the upper water chamber 1, then from the upper water chamber 1 into the radiator core 4, then into the lower water chamber 5, and finally out through the lower water pipe 6 of the lower water chamber 5. When the upper water pipe 2 of the upper water chamber 1 and the lower water pipe 6 of the lower water chamber 5 are on the same side of the upper and lower water chambers 1 and 5 respectively, most of the water flows into the radiator core 4 area near the upper water pipe 2 and then flows out from the radiator core area near the lower water pipe 6. This results in very little water flow in the radiator core 4 area far from the upper and lower water pipes 1 and 6, causing uneven water flow within the radiator core 4, leading to uneven heat dissipation and reduced heat dissipation performance. Now, the guide pipe 3 connects to the upper water pipe 2, introducing water into the upper water chamber 1. The water flows evenly along the guide pipe 3 within the upper water chamber 1, smoothly into the radiator core 4, then into the lower water chamber 5, and finally collects at the lower water pipe 6 before flowing out. This allows the water to flow evenly and dispersedly into the radiator core 4, achieving uniform heat dissipation and increasing the radiator's heat dissipation performance.
Claims
1. A radiator device for increasing heat dissipation performance, characterized in that: It mainly consists of an upper water chamber, an upper water pipe, a guide pipe, a radiator core, a lower water chamber, and a lower water pipe; the upper water chamber is the chamber where water flows; the upper water pipe is assembled on one side of the upper water chamber; The guide pipe is a curved pipe with open ends. It is assembled in the water inlet chamber, with one end connected to the water inlet pipe and the other end leading into the water inlet chamber. The radiator core is the heart of the radiator, with one end connected to the upper water chamber and the other end connected to the lower water chamber; the lower water chamber is the chamber where water flows; the drain pipe is assembled on one side of the lower water chamber.