首页> 外国专利> Was heated by microwave ceramics, converted to radiation far-infrared, infrared wavelengths from china, chemical reaction and cooking up the thermal efficiency, chemical degradation, chemical polymerization, chemical synthesis, metal processing, metal crystal, sintered metal, metallurgy how to do

Was heated by microwave ceramics, converted to radiation far-infrared, infrared wavelengths from china, chemical reaction and cooking up the thermal efficiency, chemical degradation, chemical polymerization, chemical synthesis, metal processing, metal crystal, sintered metal, metallurgy how to do

机译:由微波陶瓷加热,转换为辐射远红外,来自中国的红外波长,化学反应和蒸煮的热效率,化学降解,化学聚合,化学合成,金属加工,金属晶体,烧结金属,冶金怎么办

摘要

Unlike the rapid progress of science, a method of heating a substance, not much progress. Study of optimum temperature for heating of the material often, it does not capture the heat from the heat absorption wavelength of a substance to be heated. Microwave heating is a heating method by frictional heat molecules, microwaves are absorbed by the magnetic material, etc. Separately, the emission wavelength is converted far-infrared and infrared wavelength regions. temperature can be controlled by the Curie temperature of the magnetic material has, within the range of a constant temperature, the thermal energy is amplified region of wavelength radiation can be controlled, increasing its density was found. Temperature can be easily obtained in a short time without using an electric furnace and used magnetic material is the principle of the black-body radiation, it is applied to ceramics in a microwave oven, magnetite, aluminum oxide, zirconia, zeolite, It becomes wider applications of chemical experiment. That as cooking a microwave oven, which is used every day in homes across the country, easily, quickly, it can be delicious cooking When you use this technique, cooking can be without using the open flame safely even in children and the elderly has been found . Time that is microwave heating using pottery is from about 15 years ago. Theoretical background is small, it has been left in difficult. Heating of the magnetic material by microwave has been exceeded from the thinking area of ​​classical physics. It is obtained by using the quantum mechanical effects by not the theory of classical physics, and irradiated with microwave magnetic material, the resonance of the spins of the magnetic material, that radiates far-infrared microwaves are absorbed. Was solved by the combined effect of the far infrared radiation by black body radiation and Planck quantum theory by microwave irradiation of the magnetic material.
机译:与科学的飞速发展不同,加热物质的方法进展不大。通常研究用于加热材料的最佳温度,它不能从待加热物质的吸热波长中吸收热量。微波加热是一种通过摩擦热分子加热的方法,微波被磁性材料吸收等。分别地,发射波长被转换为远红外和红外波长区域。可以通过居里温度控制磁性材料的温度,在恒定温度范围内,将热能放大,可以控制波长辐射的区域,发现其密度增加。无需使用电炉即可在短时间内轻松获得温度,使用的磁性材料是黑体辐射的原理,它可用于微波炉中的陶瓷,磁铁矿,氧化铝,氧化锆,沸石,并且变得更宽化学实验的应用。就像烹饪微波炉一样,微波炉在全国各地的家庭中每天都可轻松,快速地进行,这可谓是美味佳肴。使用此技术,即使在儿童和老人中,也可以不用安全地使用明火烹饪。找到了。使用陶器进行微波加热的时间大约是15年前。理论背景很小,很难。古典物理学的研究领域已经超出了通过微波加热磁性材料的范围。它是利用量子力学效应而不是经典物理学原理而获得的,并用微波磁性材料辐照,从而吸收了辐射远红外微波的磁性材料的自旋共振。通过黑体辐射的远红外辐射与磁性材料的微波辐射的普朗克量子理论的组合效应解决了。

著录项

  • 公开/公告号JPWO2006129829A1

    专利类型

  • 公开/公告日2009-01-08

    原文格式PDF

  • 申请/专利权人 河野 武平;

    申请/专利号JP20070519099

  • 发明设计人 河野 武平;河野 一人;松瀬 丈浩;

    申请日2006-05-29

  • 分类号A47J36/04;A47J27;H05B6/74;B22F3/10;

  • 国家 JP

  • 入库时间 2022-08-21 19:37:01

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