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High-Temperature Combustion Synthesis: Generation of Electromagnetic Radiation and the Effect of External Electromagnetic Fields(Review)

机译:高温燃烧合成:电磁辐射的产生和外部电磁场的影响(综述)

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摘要

A critical review of recent papers on mechanisms of generation of internal electromagnetic fields and the action of external electromagnetic fields on self-propagating high-temperature synthesis of heterogeneous systems is presented.Generation of an internal electromagnetic field is caused by different rates of diffusion of charged defects through the layer of the growing product in strongly nonequilibrium reactions.Possible emergence of residual magnetic fields is related to orientation of magnetic domains in the arising internal thermal and electromagnetic fields of the synthesis wave.The external electromagnetic action is characterized by thermal,magneto-and electrodynamic,and kinetic factors.The thermal factor is caused by the Joule effect,whereas the electro-and magnetodynamic influence is caused by electromigration,magnetic compression and changes in electrical conductivity of the condensed phase,and ion wind in the gas in pores.The kinetic factor is caused by generation of su-perequilibrium charge carriers in condensed particles(defects)and by emission of high-energy electrons into the gas surrounding the particles.
机译:提出了有关内部电磁场的产生机理和外部电磁场对异质系统自蔓延高温合成的作用的最新论文的批判性综述。内部电磁场的产生是由电荷的不同扩散速率引起的在强烈的非平衡反应中穿过生长产物的层出现缺陷。残余磁场的可能出现与合成波产生的内部热和电磁场中磁畴的取向有关。外部电磁作用的特征是热,磁-热因子是由焦耳效应引起的,而电和磁动力学的影响是由电迁移,磁压缩和凝结相的电导率的变化以及孔隙中气体中的离子风引起的。动力学因素是由超滤的产生引起的凝聚态粒子(缺陷)中的平衡电荷载流子,以及通过向粒子周围的气体中发射高能电子来实现的。

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