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Re-evaluation of SiC permeation coefficients at high temperatures

机译:高温下SiC渗透系数的重新评估

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Since 2007, our group has studied the deuterium permeation and diffusion coefficients for SiC materials at temperatures above 600 degrees C as a means of evaluating the tritium inventory and permeation in fusion blankets. During such measurements, control and evaluation of the wraparound flow through the sample holder are important, and so the heated sample holder is enclosed by a glass tube and kept under vacuum during experimental trials. However, detailed studies regarding the required degree of vacuum based on model calculations have shown that the wraparound flow is much larger than expected, and so can affect measurements at high temperatures. We therefore modified the measurement apparatus based on calculations involving reduced pressure in the glass tube, and are now confident that the measurement error is only several percent, even at 950 degrees C. In this paper, recent experimental results obtained with a chemical vapor deposition (CVD)-SiC sample over the temperature range of 600-950 degrees C are presented, showing that the permeation coefficient for CVD-SiC is more than three orders of magnitude smaller than that for stainless steel (SS316) at 600 degrees C, and that at 950 degrees C, the coefficient for CVD-SiC is almost equal to that for SUS316 at 550 degrees C. (C) 2015 Elsevier B.V. All rights reserved.
机译:自2007年以来,我们小组研究了SiC材料在600摄氏度以上的温度下的氘渗透和扩散系数,以此作为评估fusion在熔敷层中的存量和渗透的方法。在进行此类测量期间,控制和评估通过样品架的回绕流非常重要,因此加热的样品架被玻璃管封闭,并在实验过程中保持真空。但是,基于模型计算有关所需真空度的详细研究表明,回绕流量远大于预期,因此会影响高温下的测量。因此,我们基于涉及玻璃管中减压的计算对测量设备进行了修改,现在确信即使在950摄氏度时,测量误差也只有百分之几。在本文中,最近的实验结果是通过化学气相沉积获得的(给出了在600-950摄氏度温度范围内的CVD)-SiC样品,表明CVD-SiC的渗透系数比600摄氏度下的不锈钢(SS316)的渗透系数小三个多数量级,并且在950摄氏度下,CVD-SiC的系数几乎等于在550摄氏度下SUS316的系数。(C)2015 Elsevier BV保留所有权利。

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