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Error evaluation in hydrogen isotope permeability measurement and the required degree of vacuum

机译:氢同位素渗透率测量中的误差评估和所需的真空度

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In the measurement of the hydrogen isotope permeability of Silicon-Carbide, control and the evaluation of the wraparound through the sample holder is important problem. For this purpose, the heated holder part is enclosed by a glass tube and kept at vacuum during experiments, but detail examination about required degree of the vacuum has not be made. In this paper, the amount of the wraparound flow was evacuated by experiments and model calculations. It is found in the experiments, the flow rate from glass tube to the low pressure line is linear dependence on the tube pressure at 0.1∼100 Pa, although that from high pressure line into the glass tube is proportional to square-root of pressure of the high pressure line as expected. The ratio of the wraparound flow to the mail flow during permeation measurement condition was estimated to be 6∼10 % from the extrapolation of experiments results. On the other hand, the model calculation results were still one order higher than observed even when first-order dependency was assumed. The impurities on outer surface of the holder or gas are considered to limit the permeation in the experiments.
机译:在测量碳化硅的氢同位素渗透率时,控制和评估通过样品架的包裹率是重要的问题。为此目的,被加热的保持器部分被玻璃管包围并在实验过程中保持真空,但是尚未对所需的真空度进行详细检查。在本文中,通过实验和模型计算对回绕流量进行了排空。在实验中发现,从玻璃管到低压管的流量与管压力在0.1〜100 Pa上呈线性关系,尽管从高压管到玻璃管的流量与管的压力平方根成正比。高压线符合预期。根据实验结果的推算,在渗透率测量条件下,回绕流与邮件流的比率估计为6%至10%。另一方面,即使假设一阶相关性,模型计算结果仍比观察到的结果高一阶。在实验中,固定器外表面上的杂质或气体被认为限制了渗透。

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