首页> 外文期刊>IEEE Transactions on Plasma Science >Plasma and heat flux characteristics of a supersonic ammonia or nitrogen/hydrogen-mixture direct-current plasma jet impinging on a flat plate
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Plasma and heat flux characteristics of a supersonic ammonia or nitrogen/hydrogen-mixture direct-current plasma jet impinging on a flat plate

机译:撞击在平板上的超音速氨或氮/氢混合物直流等离子体射流的等离子体和热通量特性

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Spectroscopic and electrostatic probe measurements were made to examine plasma characteristics with or without a titanium plate under nitriding for a 10-kW-class direct-current arc plasma jet generator with a supersonic expansion nozzle in a low-pressure environment. Heat fluxes into the plate from the plasma were also evaluated with a Nickel slug and thermocouple arrangement. Ammonia and mixtures of nitrogen and hydrogen were used as a working gas. The NH/sub 3/ and N/sub 2/+3H/sub 2/ plasmas in the nozzle and in the downstream plume without a substrate plate were in thermodynamical nonequilibrium states. As a result, the H-atom electronic excitation temperature and the N/sub 2/ molecule-rotational excitation temperature intensively decreased downstream in the nozzle although the NH molecule-rotational excitation temperature did not show an axial decrease. Each temperature was kept in a small range in the plume without a substrate plate except for the NH rotational temperature for NH/sub 3/ working gas. On the other hand, as approaching the titanium plate, the thermodynamical nonequilibrium plasma came to be a temperature-equilibrium one because the plasma flow tended to stagnate in front of the plate. The electron temperature had a small radial variation near the plate. Both the electron number density and the heat flux decreased radially outward, and an increase in H/sub 2/ mole fraction raised them at a constant radial position. In cases with NH/sub 3/ and N/sub 2/+3H/sub 2/, a radical of NH with a radially wide distribution was considered to contribute to the better nitriding as a chemically active and non heating process.
机译:进行了光谱和静电探针测量,以检查在低压环境下带有超音速膨胀喷嘴的10 kW级直流电弧等离子体喷射发生器在渗氮条件下有无钛板时的等离子体特性。还用镍塞和热电偶布置评估了从等离子体进入板的热通量。氨以及氮气和氢气的混合物用作工作气体。喷嘴中和没有基板的下游羽流中的NH / sub 3 /和N / sub 2 / + 3H / sub 2 /等离子体处于热力学非平衡状态。结果,尽管NH分子旋转激发温度没有显示出轴向降低,但是H原子电子激发温度和N / sub 2 /分子旋转激发温度在喷嘴下游急剧降低。除了NH / sub 3 /工作气体的NH旋转温度外,每个温度都在没有基板的情况下保持在羽状流的小范围内。另一方面,随着接近钛板,由于等离子体流倾向于停滞在板的前面,所以热力学非平衡等离子体成为温度平衡的。电子温度在板附近具有小的径向变化。电子数密度和热通量都沿径向向外减小,并且H / sub 2 /摩尔分数的增加使它们在恒定的径向位置处升高。在具有NH / sub 3 /和N / sub 2 / + 3H / sub 2 /的情况下,具有径向宽分布的NH自由基被认为是化学活性和非加热过程中有助于更好氮化的元素。

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