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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Physical mechanisms of helium release during deformation of vanadium alloys doped with helium atoms
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Physical mechanisms of helium release during deformation of vanadium alloys doped with helium atoms

机译:掺氦原子的钒合金变形过程中氦释放的物理机理

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摘要

Helium embrittlement of vanadium alloys which are labored for future fusion reactors may be closely related to the transport to helium to critical sites within the material (grain boundaries, precipitates, etc.). Recently during high-temperature mechanical tests of helium-doped vanadium alloys by the tritium trick technique, the abnormal helium release peaks have been observed. In this case, a good correlation has been found between the helium release during the deformation and embrittlement processes. Such results have fundamental meaning for understanding the helium behavior during deformation of fusion structural materials. In the present paper, the physical mechanisms of abnormal helium release from deforming vanadium allows are suggested. The theory of helium release is based on the dynamic-diffusion models of dislocation motion with helium atoms and helium bubbles, where helium atoms and helium bubbles are swept by moving dislocations. In the suggested model, the effect of the strain rate of plastic deformation and pipe diffusion of helium atoms along dislocations on this phenomenon is considered. The theoretical models are compared with experimental results for helium release during deformation of vanadium alloys after helium doping by the tritium trick technique. The temperature dependence of this phenomenon and the effect of strain rate on growth kinetics of helium bubbles are analyzed. The present results allows us to understand the effect of various helium doping techniques (helium trick, cyclotron preimplantation and boron-10 technique) on helium release from deformed vanadium alloys.
机译:为将来的聚变反应堆而工作的钒合金的氦脆性可能与将氦运输到材料中的关键部位(晶界,沉淀物等)密切相关。最近,在通过t技巧技术对掺氦钒合金进行高温机械测试期间,观察到异常的氦释放峰。在这种情况下,已发现在变形和脆化过程中氦气的释放之间具有良好的相关性。这些结果对于理解熔融结构材料变形过程中的氦行为具有根本意义。在本文中,提出了从变形钒允许的异常氦释放的物理机理。氦释放理论基于氦原子和氦气泡的位错运动的动态扩散模型,其中氦原子和氦气泡通过位错移动而被清除。在建议的模型中,考虑了塑性变形的应变速率和氦原子沿位错的管道扩散对此现象的影响。 t trick技术在氦掺杂后钒合金变形过程中释放氦的理论模型与实验结果进行了比较。分析了这种现象的温度依赖性以及应变速率对氦气泡生长动力学的影响。目前的结果使我们能够了解各种氦掺杂技术(氦技巧,回旋加速器预植入和硼10技术)对变形钒合金中氦释放的影响。

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