Multi-stage drawing manufacturing method for superfine fluted tube

A manufacturing method and groove technology, applied in the field of heat pipe manufacturing, to achieve the effects of simple processing technology, easy operation, and large aspect ratio

Inactive Publication Date: 2010-12-01
SOUTH CHINA UNIV OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, limited by the size limit of the multi-tooth core and the spinning process, this method is only suitable for processing heat pipes with a diameter of about 6mm or even larger, and for heat pipes with a diameter of less than 3mm, especially for minimally invasive medical devices. Small heat pipes are useless

Method used

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  • Multi-stage drawing manufacturing method for superfine fluted tube
  • Multi-stage drawing manufacturing method for superfine fluted tube
  • Multi-stage drawing manufacturing method for superfine fluted tube

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Embodiment 1

[0035] The multi-drawing process of the present invention is used to manufacture micro-grooved tubes with an outer diameter of 3.0mm.

[0036] Such as figure 1 , 2 As shown, firstly a set of shrinking dies 1 needs to be designed and manufactured, including 4 shrinking dies, the diameter series are D1=5.5mm, D2=5.0mm, D3=4.0mm, D4=3.0mm. The shrink tube mold 1 is made of 45# steel, and the taper angle range of the lead-in section 11 is 30°. A circular arc R=0.5mm is used for a smooth transition between the introduction section 11 and the shaping section 12, the surface hardness is HRC40, and the surface roughness is Ra0.8.

[0037] Such as image 3 As shown, a copper tube 3 with an outer diameter of 6 mm and a length of 1 meter is prepared, and its inner wall is attached with axially extending micro-toothed fins to separate the inner wall of the copper tube into an axial micro-groove structure with capillary structure characteristics. The number of tooth-shaped fins is 24, ...

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Abstract

The invention discloses a multi-stage drawing manufacturing method for a superfine fluted tube. The method comprises the following steps of: reducing the external diameter of one end of a copper tube with diameter of 6mm to 2.8 to 3mm on a forging hammer type pipe-shrinkage machine; then clamping and fixing a tube reduction die clamp on a horizontal lathe; allowing the diameter reduction section of the copper tube pass through a tube reduction die, clamping and fixing the tube reduction die on a tool rest of the horizontal lathe, starting the horizontal lathe, and drawing the whole copper tube to pass through the tube reduction die, wherein the tube reduction die comprises an induction section and a reforming section, the induction section is a cone-shaped face with cone angle of 20 to 40 DEG C, the reforming section is a round through hole, and under the extrusion of the tube reduction die, the green body of the copper tube performs plastic deformation and the external diameter is reduced; and after first drawing, replacing the tube reduction die by the tube reduction die with smaller through hole of the reforming section, and repeatedly drawing for multiple times until the external diameter of the copper tube is no more than 3mm. The method has the advantages of breaking through the restriction of the conventional manufacturing process for the fluted thermotube, obtaining superfine fluted tubes which have the diameter of no more than 3mm and good superfine fluted tube characteristic in batches, along with simple device and easy processing.

Description

technical field [0001] The invention relates to a method for manufacturing a heat pipe, in particular to a method for manufacturing a micro-grooved tube by multistage drawing. Background technique [0002] With the emergence of new features and phenomena such as the rapid increase of chip heat flux density and the decreasing effective heat dissipation space in the field of microelectronics, the traditional heat dissipation method of increasing the effective heat dissipation area can no longer meet its heat dissipation requirements, and has a simple structure and high efficiency. Small / miniature heat pipes with thermal conductivity, good isothermal properties, fast thermal response, and no need for additional electric drives have become ideal components for heat conduction of chips with high heat flux density. The heat transfer performance of the heat pipe mainly depends on the structure of the liquid-absorbing core on the inner wall of the pipe. Although the traditional cop...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B21C37/22B21C1/22
Inventor 汤勇欧栋生陈剑鸿葛子平练彬陈伟彬
Owner SOUTH CHINA UNIV OF TECH
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