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The Characteristics of a Low-Power-Consumption Plasma Jet and Ceramic Coatings

机译:低功耗等离子流和陶瓷涂层的特性

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The effects of the composition of plasma gases (Ar-N{sub}2, Ar-H{sub}2), arc current, and voltage on the temperature and velocity of a low-power (5 kW) plasma torch in the arc field free region has been investigated using an enthalpy probe. Coatings of Al{sub}2O{sub}3-13TiO{sub}2 were deposited under different conditions. The results show that in the Ar-N{sub}2 plasma, the enthalpy, temperature, and velocity change little with arc current and voltage when regulating the nitrogen proportion in the plasma gas. The hardness of the resulting coatings is 800 to 900 kg/mm{sup}2 HV.300. For Ar-H{sub}2 plasma, however, increases in the H{sub}2 content in the mixture of the gases remarkably enhanced the velocity and heat transfer ability of the plasma jet, with the result that the coatings showed high hardness up to 1200 HV.
机译:等离子气体(Ar-N {sub} 2,Ar-H {sub} 2)的成分,电弧电流和电压对电弧中低功率(5 kW)等离子炬的温度和速度的影响已经使用焓探针研究了无场区。在不同条件下沉积了Al {sub} 2O {sub} 3-13TiO {sub} 2涂层。结果表明,在Ar-N {sub} 2等离子体中,当调节等离子体气体中的氮比例时,焓,温度和速度随电弧电流和电压的变化很小。所得涂层的硬度为800至900kg / mm 2 HV.300。但是,对于Ar-H {sub} 2等离子体,气体混合物中H {sub} 2含量的增加显着增强了等离子体射流的速度和传热能力,结果涂层表现出较高的硬度到1200 HV

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