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Enthalpy Probe Measurements on Thermal Plasma Jets Generated by a Hollow Electrodes Plasma Torch with Reversed Polarity Discharge

机译:带有反向极性放电的空心电极等离子炬产生的热等离子射流的焓探针测量

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Summary form only given. A reversed polarity discharge of the thermal plasma torch is frequently used in the material processing field, because a turbulent flow of the plasma jet significantly enhances the mixing of reactants with the plasma due to an active motion of cathodic arc roots at the outlet of the torch. Furthermore, an eroded cathode which protrudes from the plasma torch exit is conveniently replaced with a new one for the reverse polarity plasma torch. Using a hollow electrodes plasma torch with a reverse polarity operated, nanostructured carbonaceous materials were synthesized by the thermal decomposition of methane, and different morphologies of them were observed depending on the input electric power. Since the input power level of the plasma torch strongly affects temperature and velocity distributions of the thermal plasma jet, a study on the characteristics of the jets is required to understand the synthesis mechanism of carbonaceous materials. In spite of numerous research on the reverse polarity plasma torch, only limited knowledge has been so far established on the characteristics of thermal plasma jets generated by it. Through the present experimental work, a previous two-dimensional numerical model is modified more accurately to predict the thermal flow characteristics of plasma jets produced by reversed polarity discharges of a hollow electrodes plasma torch in various operating conditions. For confirming the validity of the numerical model, the temperature and velocity distributions of thermal plasma jets ejected from the torch are measured by using an enthalpy probe diagnostic method. In this experimental work, a hollow cathode with 16 mm diameters is employed and several tens kW power is supplied to the plasma torch
机译:仅提供摘要表格。在材料加工领域中经常使用热等离子体炬的反极性放电,因为等离子体炬的湍流会由于炬炬出口处阴极电弧根的主动运动而显着增强反应物与等离子体的混合。 。此外,从等离子炬出口突出的腐蚀阴极可以方便地用新的用于反极性等离子炬的阴极代替。使用具有反极性操作的空心电极等离子炬,通过甲烷的热分解合成了纳米结构的碳质材料,并根据输入电功率观察到了它们的不同形态。由于等离子炬的输入功率水平强烈影响热等离子体射流的温度和速度分布,因此需要对射流的特性进行研究,以了解碳质材料的合成机理。尽管对反极性等离子体炬进行了大量研究,但到目前为止,关于由其产生的热等离子体射流的特性仅建立了有限的知识。通过当前的实验工作,可以更精确地修改先前的二维数值模型,以预测在各种操作条件下空心电极等离子炬的反极性放电所产生的等离子流的热流特性。为了确认数值模型的有效性,使用焓探针诊断方法测量了从割炬喷出的热等离子体射流的温度和速度分布。在此实验工作中,使用了直径为16 mm的空心阴极,并向等离子炬提供了几十kW的功率

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