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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Investigation of hydrogen bubbles behavior in tungsten by high-flux hydrogen implantation
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Investigation of hydrogen bubbles behavior in tungsten by high-flux hydrogen implantation

机译:高通量氢气植入钨中氢气泡沫的研究

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Hydrogen isotopes retention and bubbles formation are critical issues for tungsten as plasma-facing material in future fusion reactors. In this work, the formation and growing up behavior of hydrogen bubbles in tungsten were investigated experimentally. The planar TEM samples were implanted by 6.0 keV hydrogens to a fluence of 3.38 x 10(18) H.cm(-2) at room temperature, and well-defined hydrogen bubbles were observed by TEM. It was demonstrated that hydrogen bubbles formed when exposed to a fluence of 1.5 x 10(18) H.cm(-2), and the hydrogen bubbles grew up with the implantation fluence. In addition, the bubbles' size appeared larger with higher beam flux until saturated at a certain flux, even though the total fluence was kept the same. Finally, in order to understand the thermal annealing effect on the bubbles behavior, hydrogen-implanted samples were annealed at 400, 600, 800, and 1000 degrees C for 3 h. It was obvious that hydrogen bubbles' morphology changed at temperatures higher than 800 degrees C. (c) 2018 Elsevier B.V. All rights reserved.
机译:氢同位素保持和气泡形成是钨作为未来融合反应器中的等离子体材料的关键问题。在这项工作中,实验研究了钨中氢气泡沫的形成和成长行为。平面TEM样品在室温下将6.0keV液体植入3.38×10(18)℃(-2)的流量,并且通过TEM观察到明确的氢气泡。据证明,当暴露于1.5×10(18)HCM(-2)的流量时形成的氢气泡,氢气泡沫升高。此外,气泡的尺寸随着较高的光束通量而越大较大,直至在某种助焊剂处饱和,即使总使用量保持不变。最后,为了了解对气泡行为的热退火效果,在400,600,800和1000℃下退火氢气注入样品3小时。很明显,氢气泡沫形态在高于800℃的温度下变化。(c)2018 Elsevier B.v.保留所有权利。

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