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Low-power plasma torch method for the production of crystalline spherical ceramic particles

机译:低功率等离子炬生产晶体球形陶瓷颗粒的方法

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摘要

A low-power, atmospheric pressure, microwave plasma torch was used to make spherical alumina particles of controlled size from irregularly shaped precursor powders. Detailed studies of the impact of operating parameters, particularly gas identity (argon or air), gas flow rates, and applied power, showed that particle size changed in a predictable fashion. The most important factor in controlling particle size appears to be precursor particle density in the aerosol stream that enters the plasma hot zone. This and other facts suggest that particle collision rate is primarily responsible for determining ultimate particle size, although atomic addition also plays a role. Reproducible volume average particle sizes ranging from 97 to 1150 μm~3 were formed From precursor particles of order 14 μm~3. Moreover, for the first time we report the Creation of an atmospheric pressure low-power air plasma (<1 kW).
机译:使用低功率,大气压的微波等离子炬,由不规则形状的前体粉末制成尺寸受控的球形氧化铝颗粒。对操作参数(尤其是气体标识(氩气或空气),气体流速和施加功率)的影响进行的详细研究表明,粒径以可预测的方式变化。控制粒径的最重要因素似乎是进入等离子体热区的气溶胶流中的前驱体颗粒密度。这一事实和其他事实表明,尽管原子加成也起着一定的作用,但粒子碰撞率主要决定了最终的粒子尺寸。由数量级为14μm〜3的前体颗粒形成了可再现的体积平均粒径,范围为97至1150μm〜3。此外,我们首次报告了大气压低功率空气等离子体(<1 kW)的产生。

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