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Simulation study of carbon impurity dynamics on reduced-activation ferritic/martensitic steel material at elevated temperatures under hydrogen exposure

机译:氢暴露下高温下还原活化铁素体/马氏体钢中碳杂质动力学的模拟研究

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摘要

The temperature dependence of net erosion of a Reduced-Activation Ferritic/martensitic steel (RAF) target, F82H, exposed to 0.33 keV H~+ (H: 99.2%) and 1 keV C~+ (C: 0.8%) has been studied in terms of the diffusion of C impurity deposited on the target and its chemical erosion (CH_4 release) by H~+ impact. Calculated results are in good agreement with the experiments, which indicates that the diffusion and chemical erosion play a key role in the temperature dependence. At low temperatures below 500 K, both effects contribute little. At median temperatures of 500-773 K, there is a significant contribution of chemical erosion, while a significant contribution of the diffusion occurs above 1000 K. Also, the dependence of the net erosion on the C impurity concentration for a variety of the temperatures has been studied. At the low temperatures, the net erosion is suppressed with increasing C impurity concentration ( < C: 2.0%), while it is enhanced at the median temperatures. At the high temperatures, there is a suppression of the net erosion.
机译:研究了暴露于0.33 keV H〜+(H:99.2%)和1 keV C〜+(C:0.8%)的还原活化铁素体/马氏体钢(RAF)靶材F82H的净腐蚀温度依赖性。从沉积在靶上的C杂质的扩散及其通过H〜+冲击引起的化学腐蚀(CH_4释放)来看。计算结果与实验结果吻合良好,表明扩散和化学侵蚀在温度依赖性中起关键作用。在低于500 K的低温下,这两种作用几乎没有作用。在中值温度为500-773 K时,化学腐蚀的贡献很大,而在1000 K以上,扩散的贡献很大。而且,在各种温度下,净腐蚀对C杂质浓度的依赖性也很大。经过研究。在低温下,随着C杂质浓度的增加(

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