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Superconducting tube

Inactive Publication Date: 2007-12-27
TSAI HUA HSIN
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0008]It is a main object of the invention to provide an improvement on a fixing mechanism of a lathe to overcome the above-mentioned problems. The superconducting tube of the present invention includes a hollow metallic guide tube, and a kind of working medium contained in the metallic guide tube for absorbing energy. The metallic guide tube is vacuum, containing no gas except for the working medium while the working medium consists of oxygen-free medium, and metallic nanoparticulates; when the working medium is absorbing energy, Brownian motion will happen in the working medium, and the working medium will go through phase change to produce impulsive phenomenon such that energy is carried away at increased speed. Therefore, the superconducting tube can be used in many different situations, and work relatively efficiently and effectively, and it is relatively easy and costs less to manufacture

Problems solved by technology

Superconducting tubes are fitted on a wide variety of equipments, e.g. electronic devices, and heat exchangers, for dissipating heat produced by the devices, thus preventing the devices from being subjected to high temperature, which would cause breakdown, damage, and reduction to the efficiency of the devices.

Method used

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Embodiment Construction

[0016]Referring to FIGS. 1 and 2, a preferred embodiment of a superconducting tube includes a metallic guide tube 1, and a kind of working medium 2 contained in the metallic guide tube 1 for absorbing energy.

[0017]The metallic guide tube 1 is vacuum, containing no gas except for the working medium 2. The working medium 2 consists of an oxygen-free medium, and metallic nanoparticulates, and has Brownian motion existing therein.

[0018]In use, first the metallic guide tube 1 is fitted on an object. When the working medium 2 is absorbing energy, Brownian motion will happen in the working medium 2, and the working medium 2 will go through phase change to produce impulsive phenomenon such that energy is rapidly carried away.

[0019]When the superconducting tube is used in a low-temperature environment, the oxygen-free medium in the working medium 2 will go through phase change, and work together with the solid-phase metallic nanoparticulates in the working medium 2 so as to send heat to the ...

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PUM

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Abstract

A superconducting tube includes a hollow metallic guide tube, and a kind of working medium contained in the metallic guide tube for absorbing energy; the metallic guide tube is vacuum, containing no gas except for the working medium; the working media consists of an oxygen-free medium, and metallic nanoparticulates; when the working medium is absorbing energy, Brownian motion will happen in the working medium, and the working medium will go through phase change to produce impulsive phenomenon such that energy is carried away at increased speed.

Description

BACKGROUND OF THE INVENTION[0001]1. Field of the Invention[0002]The present invention relates to a superconducting tube, more particularly one, which can be used in many different situations, and work relatively efficiently and effectively, and is relatively easy and costs less to manufacture.[0003]2. Brief Description of the Prior Art[0004]Superconducting tubes are fitted on a wide variety of equipments, e.g. electronic devices, and heat exchangers, for dissipating heat produced by the devices, thus preventing the devices from being subjected to high temperature, which would cause breakdown, damage, and reduction to the efficiency of the devices. In addition, superconducting tubes can be used for providing heat to a low-temperature environment.[0005]Referring to FIG. 3, a common superconducting tube 3 includes a metallic guide tube 31, a return flow insulating layer 311 on an inner side of the metallic guide tube 31, and a kind of working medium 32 contained in the metallic guide t...

Claims

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Application Information

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IPC IPC(8): F28D15/00
CPCC09K5/04F28F23/00F28D15/02
Inventor TSAI, HUA-HSIN
Owner TSAI HUA HSIN