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Heat pipe

A heat pipe and heat transfer technology applied to heat pipes. It can solve problems such as hindering condensed liquid, blocking or restricting steam diffusion, reducing the maximum heat transfer of heat pipes, etc., to achieve the effect of enhancing heat transfer capacity

Inactive Publication Date: 2007-10-17
FU ZHUN PRECISION IND SHENZHEN +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] However, the existing heat pipes are limited by the small heat dissipation area of ​​the condensation section and the poor heat dissipation efficiency of the condensation section, which hinders the reflux of the condensed liquid through capillary force, which leads to premature drying and rapid temperature rise, limiting its maximum heat transfer (Qmax) ; and due to the high "length / inner diameter" ratio of the heat pipe, the heat loss during the steam transmission process causes part of the steam flowing through the center of the heat pipe to condense into liquid droplets in advance and mix in the steam flow, thereby blocking or restricting the flow of steam to The diffusion of the condensation section increases the thermal resistance of the heat pipe and reduces the maximum heat transfer of the heat pipe; and because the traditional heat pipe has a uniform thickness of the capillary structure layer and the diameter of the steam flow channel, the steam absorbed by the evaporation section evaporates along the steam flow channel. The speed of transmission to the condensation section is reduced, which promotes the loss of heat and increases the temperature difference (ΔT) from the evaporation section to the condensation section
The method of heat pipes in the prior art to increase the maximum heat transfer is to increase the thickness of the capillary structure layer of the entire heat pipe to increase the water content in it, but relatively, it also makes the reaction time of the heat pipe longer and the temperature difference between the two ends increases. On the contrary, the method for reducing the temperature difference is to thin the thickness of the capillary structure layer of the whole heat pipe to reduce the water content in it, but relatively, it also reduces the maximum heat transfer of the heat pipe
This creates a more difficult contradiction to overcome

Method used

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Embodiment Construction

[0010] Fig. 1 is a longitudinal sectional view of an embodiment of the heat pipe of the present invention; the shown heat pipe includes a sealed heat transfer cavity 10, the inner wall of which is provided with a capillary structure 12 for reflux of condensate, and the space in the center of the capillary structure 12 is It is a steam channel 14, and a proper amount of working fluid is sealed inside the heat transfer chamber 10 and can be moderately pumped to a certain degree of vacuum; the heat transfer chamber 10 can be divided into evaporation sections along the length of the chamber according to the function of each section C. Condensation section A and heat insulation section B; a heat storage cavity 20 is sealed and sheathed on the outer wall of the corresponding evaporation section C of the heat transfer cavity 10 . Wherein, the heat transfer cavity 10 and the heat storage cavity 20 are metal tubes and metal shells respectively made of aluminum, copper or their alloys wi...

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Abstract

The invention discloses a heat pipe which includes a sealed heat transmission cavity whose inner wall is equipped with capillary structure and in which appropriate working liquid is sealed. The heat transmission cavity can be divided into evaporation section, condensation section, thermal insulation section between the former two sections along the cavity length direction. The heat pipe also includes a sealed heat accumulation cavity which is arranged on the outer wall of evaporation section corresponding to the heat transmission cavity. The heat pipe promotes maximum radiation capacity for the heat pipe and reduces temperature difference between the evaporation section and the condensation section by larger heat absorption area and latent heat of external part of the heat accumulation cavity.

Description

【Technical field】 [0001] The invention relates to a heat conduction device, in particular to a heat pipe. 【Background technique】 [0002] The heat pipe has the characteristics of ultra-quiet, fast heat transfer, high thermal conductivity, light weight, small size, no moving parts, simple structure and multi-purpose, and the heat pipe can quickly transfer a large amount of heat energy under the condition that the temperature remains almost constant. The role of superconductors is widely used; its basic structure is that the inner wall of the closed tube is lined with a capillary structure layer that is easy to absorb the operating fluid, while the central space is in a hollow state, and the equivalent capillary structure is injected into the vacuumed closed tube. The operating fluid in the total volume of pores in the structural layer can be divided into the evaporation section, the condensation section, and the adiabatic section in between according to the relative position ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F28D15/04
CPCF28D15/0275
Inventor 刘泰健童兆年侯春树王记锋何谦华
Owner FU ZHUN PRECISION IND SHENZHEN
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