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Hot-air radio microsphere and honeycomb-shaped hot-air radio function macro material integrated with hot-air radio microsphere

A honeycomb and macro material technology, applied in the direction of generators/motors, electrical components, circuit devices, etc., can solve the problem of low efficiency of thermoelectric direct conversion, and achieve the effect of easy replication

Inactive Publication Date: 2020-12-25
李福军
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] One purpose of the present invention is to provide thermal space radio microspheres and their integrated honeycomb thermal space radio functional macromaterials, which are used to solve the problem of low thermoelectric conversion efficiency in current thermoelectric material power generation technology

Method used

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  • Hot-air radio microsphere and honeycomb-shaped hot-air radio function macro material integrated with hot-air radio microsphere
  • Hot-air radio microsphere and honeycomb-shaped hot-air radio function macro material integrated with hot-air radio microsphere

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Embodiment Construction

[0018] Below in conjunction with accompanying drawing, the present invention will be further described:

[0019] Such as figure 1 As shown, this hot air radio microsphere comprises outer hollow sphere 2, inner hollow sphere 3, radio generator 6, electrode 7, plug-in type protection tube 9, outer hollow sphere 2 and inner hollow sphere 3 are arranged at the same spherical center, outer The interlayer space between the hollow ball 2 and the inner hollow ball 3 is a vacuum chamber 1; the outer hollow ball 2 is made of a radiation-proof plate 4, and the inner surface of the outer hollow ball 2 is covered with a thermal radiation coating 5; the inner hollow ball 3 is also made of an anti-radiation plate 4. Made of radiant plate 4, the outer surface of the inner hollow ball 3 is covered with a radio generator 6, and the inner surface of the inner hollow ball 3 is covered with an insulating layer 8, and the insulating layer 8 is used to maintain the temperature inside the inner hollo...

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Abstract

The invention relates to a hot-air radio microsphere and an integrated honeycomb-shaped hot-air radio function macro material thereof; the hot-air radio microsphere comprises an outer hollow sphere, an inner hollow sphere and a radio generator, the outer hollow sphere and the inner hollow sphere are arranged in the same sphere center, and an interlayer space between the outer hollow sphere and theinner hollow sphere is a vacuum cavity; the outer hollow ball is made of an anti-radiation plate, and the inner surface of the outer hollow ball is covered with a thermal radiation coating; the innerhollow ball is also made of a radiation protection plate, the outer surface of the inner hollow ball is covered with a radio generator, the inner surface of the inner hollow ball is covered with a heat preservation layer, electrodes are arranged on the inner surface of the inner hollow ball and connected with the radio generator, a plug-in protection pipe penetrates through the outer hollow balland then is fixed to the outer surface of the inner hollow ball, and each electrode is connected with an outer power transmission line. The outer power transmission lines pass through the plug-in protection tube and are led out from the inner hollow ball and the outer hollow ball through the plug-in protection tube. The invention provides a simple, convenient and easy-to-copy direct static power generation novel method for the honeycomb-shaped thermoelectric ball function macro material.

Description

technical field [0001] The invention relates to thermal electrostatic power generation technology, in particular to hot air radio microspheres and integrated honeycomb hot air radio functional macromaterials. Background technique [0002] At present, the commonly used thermoelectric conversion method is that the heat flow heats the intermediate liquid medium to achieve vaporization, and the volume expansion of the vaporized steam converts the thermal microscopic kinetic energy into macroscopic mechanical kinetic energy. Drive the turbine to rotate and then drive the generator rotor to rotate to generate electricity. This power generation method has a large system, many programs, large moving equipment, many wear and tear mechanical failures, low safety, large land occupation, large investment, large ineffective heat, and low thermoelectric efficiency (it is difficult to exceed 40%). [0003] Thermoelectric materials direct-to-electrostatic power generation is currently a ho...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02N11/00H02J3/38
CPCH02J3/38H02J3/381H02N11/002
Inventor 李福军惠芬
Owner 李福军
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