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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Temperature and pressure profiles of an ablation-controlled arc plasma in air
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Temperature and pressure profiles of an ablation-controlled arc plasma in air

机译:空气中消融控制的电弧等离子体的温度和压力分布

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Experimental measurements of the spatial distribution of temperature and composition of ablation-controlled arc plasmas are a key to validate the predictions of metal evaporation and polymer ablation models. Thus, high-speed photography and space-resolved spectroscopic measurements have been performed to characterize a stable air arc plasma jet controlled by ablation of a polymer nozzle made of Polyoxymethylene copolymer (POM-C) or polyamide (PA6). The spectroscopic analysis is performed along a plane perpendicular to the arc jet axis for a current of 1.8 kA, corresponding to an estimated current density of similar to 65 A mm(-2). Temperature and partial pressure profiles of the plasma for copper, hydrogen and carbon in the gas mixture are estimated as an inverse optimization problem by using measured side-on radiance spectra and radiative transfer spectral simulations. It is shown that the generated ablation-controlled arc has a complicated, non-uniform gas composition. Thus, the generated arc jet has a thin metallic core with a lower almost constant hydrogen pressure, surrounded by a thicker hydrogen and carbon mantle at partial pressures slightly lower than atmospheric pressure. The separation of hydrogen and carbon in the core is a consequence of demixing of the polymer vapour in the plasma. It is found that the overall shape of the temperature and pressure profiles obtained for the arc plasmas with the POM-C and PA6 nozzles are similar although differ in peak values and width.
机译:消融控制的电弧等离子体的温度和组成的空间分布的实验测量是验证金属蒸发和聚合物消融模型的预测的关键。因此,已经进行了高速摄影和空间分辨的光谱测量,以表征通过消融由聚甲醛共聚物(POM-C)或聚酰胺(PA6)制成的聚合物喷嘴控制的稳定的空气弧等离子体射流。光谱分析沿垂直于电弧射线轴的平面进行,用于1.8ka的电流,对应于估计的电流密度,其类似于65amm(-2)。通过使用测量的侧向辐射谱和辐射转移光谱模拟,估计气体混合物中铜,氢气和碳中的等离子体的温度和部分压力分布作为逆优化问题。结果表明,产生的消融控制的电弧具有复杂的不均匀的气体组合物。因此,所产生的弧形射流具有薄的金属芯,其具有较低的几乎恒定的氢气压力,由较厚的氢气和碳罩围绕略低于大气压的部分压力。氢气中的氢气和碳的分离是血浆中聚合物蒸汽的解混的结果。结果发现,由于峰值和宽度的不同,虽然峰值值和宽度不同,但是具有POM-C和PA6喷嘴的电弧等离子体所获得的温度和压力曲线的整体形状。

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