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The investigation of the influence of oxygen concentration in the gas mixture on nanodispersed oxides synthesis

机译:氧气混合物氧浓度对纳米氧化物合成的影响研究

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Thermal effects in cathode space of low-pressure arc discharge, which contribute to the synthesis of nanopowders with an average particle size of less than 10 nm, are considered. One of the most important parameters, characterizing the cathode processes of vacuum arc, is a voltage drop across the discharge gap. All the gases demonstrate a decrease of a voltage drop across the discharge gap under the condition ofincreasing the gas pressure in the range ofp =10~(-3)— 1 Pa. Dissipation of energy of ions and electrons on gas molecules causes abrupt heating of the gas. Heat, coming from gas plasma, has a significant impact on evaporating material of a cathode. It can be assumed that a microdrop fraction, formed as a result of a cathode spraying in a liquid phase, will further evaporate in a superheated gas.
机译:考虑了低压电弧放电阴极空间的热效应,其有助于合成平均粒度小于10nm的纳米粉末。表征真空电弧的阴极过程的最重要的参数之一是放电间隙的电压降。所有气体都证明了在= 10〜(-3)-1Pa范围内的气体压力的条件下放电间隙的电压降的降低。离子的能量和气体分子上的电子导致突然加热气体。来自气体等离子体的热量对阴极的蒸发材料产生显着影响。可以假设作为在液相中喷涂的阴极喷射的结果形成的微量馏分馏分将进一步蒸发在过热的气体中。

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