Thermonuclear cell

A nuclear battery and capacitor plate technology, applied in the field of thermonuclear batteries, can solve the problems of unsuitable application and high cost of tritium isotope micro-batteries, and achieve the effects of improving utilization efficiency, increasing contact area, and improving conversion efficiency

Inactive Publication Date: 2015-07-22
上海紫电能源科技有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The tritium isotope micro-battery can achieve a current of 40nA-1μA, a power of 6nW-0.1μW, and an uninterrupted output of electric energy for more than 6 years. However, the cost of the tritium isotope micro-battery is also not suitable for popularization and application.

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Embodiment Construction

[0026] The present invention provides a thermonuclear battery with low cost, safe operation and high isotope radiation conversion efficiency. The thermonuclear battery includes at least one thermonuclear battery unit, an energy storage device, and a constant-voltage and constant current device. The thermonuclear battery unit contains beta rays. The material of the source is used as the emitter, and the center of the emitter is symmetrically arranged from near to far: silicon wafer, alloy sheet, permanent magnet sheet, capacitor plate.

[0027] The present invention will be described in detail and concretely below through specific embodiments, so as to better understand the present invention, but the following embodiments do not limit the scope of the present invention.

[0028] Such as figure 1 As shown, this embodiment provides a thermonuclear battery including at least one thermonuclear battery unit 1. The thermonuclear battery unit 1 uses a substance containing a beta-ray source ...

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Abstract

The invention provides a thermonuclear cell which is low in cost, safe to operate and high in isotope irradiation conversion efficiency. The thermonuclear cell comprises at least one thermonuclear cell unit. Materials containing beta radiation sources are utilized by the thermonuclear cell unit to serve as an emitting electrode. Silicon wafers, alloy sheets, permanent magnetic pieces and capacitor plates are symmetrically arranged from near to far with the emitting electrode as the center. The silicon wafers with special structures are utilized by the thermonuclear cell, the contact area between the silicon wafers and energetic particles emitted by splitting of radioactive isotopes is increased, and the conversion efficiency is improved. The silicon wafers and the alloy sheets coated by special coating layers are utilized, the thermomagnetic properties of the silicon wafers and the alloy sheets are utilized to improve the utilization efficiency of heat energy, and the pyroelectricity capacity of the silicon wafers is integrated, so that the output electric energy is increased. It is confirmed by the experiments that the thermonuclear cell uses tritium as the radioactive source, the dimension of 160*87*23 mm is utilized, the discharge voltage reaches 3.7V to 4.2V, the mobile phone access current reaches 850 mA to 1000 mA, and the current is attenuated by 50% in twelve years, the thermonuclear cell can be used continuously for at least 6 years during the discharge, and the conversion efficiency of nuclear isotope reaches 25% to 30%.

Description

Technical field [0001] The present invention relates to a thermonuclear battery, in particular to a radioactive source that uses strontium-90 or tritium as a radioactive source. The radioactive source continuously emits energy-carrying rays with electric and thermal energy during the decay process through a semiconductor energy conversion device, and allows the energy to A device that converts and collects electrical energy. Background technique [0002] Nuclear battery, also known as isotope battery, is a device that uses radioisotope decay to release energy-carrying particles (such as alpha particles, beta particles and gamma particles) and convert their energy into electrical energy. According to the voltage level provided, nuclear batteries can be divided into high-voltage type (a few hundred to several thousand V) and low-voltage type (about tens of mV to 1V). [0003] Substantial progress in nuclear batteries began in the 1950s. Because of their small size, light weight and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G21H1/10
CPCG21H1/10
Inventor 胡寻伟
Owner 上海紫电能源科技有限公司
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