Superhigh Frequency Generators of Plasma

Superhigh Frequency Generators of Plasma
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超高频等离子体发生器

DOI:
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发表时间:
1993
期刊:
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影响因子:
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通讯作者:
V. M. Batenin
V. M. Batenin
中科院分区:
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文献类型:
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作者:
G. V. Lysov;I. Klimovskii;V. M. Batenin

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前言。记法。导论.参考资料。移动SHF放电。关于移动SHF排放的一般信息。概念机制。生成和调查的方法。运动放电的理想结构运动机制的分类。超高频放电在分子气体波导中的传播放电在空气中运动的模型。在103-104 Pa压力下的实验研究结果。103-104 Pa分子气体放电运动机理分析SHF-在大气压力下在空气中移动的放电。惰性气体波导中SHF放电的传播共振辐射扩散引起的SHF放电。103-105帕氩气中SHF放电的实验研究结果。惰性气体中放电运动机理分析。氦中SHF放电的奇异性和运动机制分子气体中沿着电磁辐射束传播的超高频放电在大气压力下在空气中放电。在氮气中放电。固定SHF-放电。稳态平衡SHF放电等离子体参数使用的基本假设。DC类比氮气中平衡超高频放电等离子体参数的实验研究SHF-氢气放电。惰性气体中稳态非平衡超高频放电低压下放电。大气压下氦中的放电。在氩气/氢气混合物中放电。氩/氢混合气体中的稳态复合放电。外磁场中的SHF放电外加磁场对运动超高频放电的稳定作用SHF场对电弧放电螺旋不稳定性的抑制SHF-等离子体发生器工程。超高频等离子体发生器的整体电动力学特性超高频等离子体发生器的基本特性和方案超高频等离子体发生器的等效电路超高频等离子体发生器工作模式的稳定性等离子体柱中的电场和能量释放。等离子体柱圆柱波导中的电磁波传播。等离子体柱中的电场和不同类型波的能量输入特性。超高频放电电场的实验研究超高频等离子体发生器的基本原理气体放电室中等离子体柱形成的条件。SHF等离子体发生器的主要类型比较。研制高功率超高频等离子体发生器的可能性SHF放电等离子体制备超弥散氮化物氮化物的现代分级方法固相和气相反应。低温等离子体在氮化物制备技术中的应用氯化法制备氮化物过程的热力学分析。等离子体化学合成氮化物的工艺学问题。超高频放电等离子体制备氮化物的工艺方案等离子体化学过程工艺特性对氮化物粉末分散性的影响。超高频放电等离子体中复合氮化物的合成超分散氮化物粉末的性质。物理和化学性质。技术属性。参考资料。指数.
Foreword. Notation. Introduction. References. MOVING SHF-DISCHARGES. GENERAL INFORMATION ON MOVING SHF-DISCHARGES. MECHANISMS OF NOTION. Methods of Generation and Investigation. Idealized Structure of Moving Discharges. Classification of the Mechanisms of Motion. SHF-DISCHARGES PROPAGATING IN WAVEGUIDES IN MOLECULAR GASES. Model of Discharge Moving in the Air. The Results of Experimental Investigations at Pressures of 103-104 Pa. Analysis of the Mechanism of Discharge Motion in Molecular Gases at pressures of 103-104 Pa. SHF-Discharge Moving in the Air at Atmospheric Pressure. SHF-DISCHARGES PROPAGATING IN WAVEGUIDES IN INERT GASES. SHF-Discharges Propagating as a Result of Resonance Radiation Diffusion. The Results of Experimental Investigations of SHF-Discharges Moving in Argon at Pressures of 103-105 PA. Analysis of the Mechanism of Discharge Motion in Inert Gases. Singularities and Mechanism of Motion of SHF-Discharges in Helium. SHF-DISCHARGES PROPAGATING ALONG ELECTROMAGNETIC RADIATION BEAM IN MOLECULAR GASES. Discharge in Air at Atmospheric Pressure. Discharge in Nitrogen. STATIONARY SHF-DISCHARGES. Parameters of the Plasma of Stationary Equilibrium SHF-Discharges. Basic Assumptions Used. DC Analogy. Experimental Investigation of the Parameters of the Plasma of Equilibrium SHF-Discharge in Nitrogen. SHF-Discharge in Hydrogen. STATIONARY NONEQUILIBRIUM SHF-DISCHARGES IN INERT GASES. Discharges at Low Pressure. Discharges in Helium at Atmospheric Pressure. Discharge in Argon/Hydrogen Mixture. Stationary Combined Discharge in Argon/Hydrogen Mixture. SHF-DISCHARGE IN EXTERNAL MAGNETIC FIELD. Stabilization of Moving SHF-Discharge by External Magnetic Field. Suppression of Corkscrew Instability of Arc Discharge by SHF-Field. SHF-PLASMA GENERATOR ENGINEERING. INTEGRAL ELECTRODYNAMIC CHARACTERISITICS OF SHF-PLASMA GENERATORS. Basic Characteristics and Schemes of SHF-Plasma Generators. Equivalent Circuits of SHF-Plasma Generators. On the Stability of the Operating Mode of SHF-Plasma Generators. ELECTRIC FIELDS AND ENERGY RELEASE IN PLASMA COLUMN. Electromagnetic Wave Propagation in a Cylindrical Waveguide with Plasma Column. Electric Fields in a Plasma Column and the Peculiarities of Energy Input for Waves of Different Types. Experimental Investigation of Electric Fields in SHF-Discharge. FUNDAMENTALS OF DESIGNING SHF-PLASMA GENERATORS. Conditions for the Formation of Plasma Column in Gas-Discharge Chamber. Comparison of Main Types of SHF-Plasma Generators. Possibility of Developing High-Power SHF-Plasma Generators. PREPARATION OF ULTRADISPERSE NITRIDES IN THE PLASMA OF SHF-DISCHARGE. MODERN METHODS OF SYNTHESIZING NITRIDES. Solid- and Gas-Phase Reactions. Low-Temperature Plasma in the Technology of Preparation of Nitrides. Thermodynamic Analysis of the Chloride Processes of Preparation of Nitrides. TECHNOLOGICAL PROBLEMS OF PLASMOCHEMICAL SYNTHESIS OF NITRIDES. The Scheme of the Technological Process for the Preparation of Nitrides in the Plasma of SHF-Discharge. The Effect of Technological Characteristics of the Plasmochemical Process on the Dispersity of Nitride Powders. The Synthesis of Composite Nitrides in the Plasma of SHF-Discharge. THE PROPERTIES OF ULTRADISPERSE NITRIDES POWDERS. The Physical and Chemical Properties. The Technological Properties. References. Index.