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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Mechanisms of crack generation in high-pure tungsten exposed to high power density plasma
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Mechanisms of crack generation in high-pure tungsten exposed to high power density plasma

机译:暴露于高功率密度等离子体的高纯钨中裂纹发电机制

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摘要

The mechanisms of crack formation in the tungsten divertor plates irradiated by hydrogen plasma under ITER-type steady-state and transient events are investigated. The stresses and defects of samples' initial structure are annealed as a result of steady-state irradiation with Falcon ion source, which generates 2 keV hydrogen ion flux of ~ 10~(22) m~(-2)s~(-1) and power density ~ 1.7 MW × m~(-2) Quasi-stationary plasma accelerator QSPA Kh-50 provides pulsed hydrogen plasma loads which operating mode simulates transient events (type I ELMs) in ITER: ion impact energy is about 400 eV, maximum plasma pressure is 0.32 MPa, pulse duration is 0.25 ms. The diffraction maxima profiles, positions, intensities, half-widths, and intensity distributions are analyzed. The origin of crack formation is found to be in the plastic deformation of surface layers by the twinning mechanism. The latter is reinforced by the interaction of twins with the hydrogen-filled micro-pores. The micro-pores appear as a result of hydrogen saturation of subtraction loops formed due to the coalescence of vacancy complexes.
机译:研究了氢等离子体在磨料型稳态和瞬态事件下辐照的钨转子板中的裂缝形成机制。样品的初始结构的应力和缺陷是由于稳态照射与猎鹰离子源的稳态照射,其产生〜10〜(22)m〜(2)S〜(-1)的2keV氢离子通量和功率密度〜1.7 mW×m〜(2)准固定等离子体加速器QSPA KH-50提供脉冲氢等离子体负载,操作模式模拟何时何种瞬态事件(I型ELMS):离子冲击能量约为400eV,最大等离子体压力为0.32MPa,脉冲持续时间为0.25ms。分析衍射最大型材,位置,强度,半宽和强度分布。发现裂缝形成的起源是通过孪晶机制呈表面层的塑性变形。后者通过双胞胎与氢气微孔的相互作用加强。由于空位复合物的聚结而形成的减法回路的氢饱和度,显微镜出现微孔。

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    National Technical University 'Kharkiv Polytechnical Institute' Kyrpychova str. 2 Kharkiv 61002 Ukraine;

    Institute of Plasma Physics NSC 'Kharkov Institute of Physics and Technology' Akademkhna St 1 Kharkiv 61108 Ukraine School of Physics and Technology V.N. Karazin Kharkiv National University Svobody sq. 4 Kharkiv 61022 Ukraine;

    National Technical University 'Kharkiv Polytechnical Institute' Kyrpychova str. 2 Kharkiv 61002 Ukraine Institute of Plasma Physics NSC 'Kharkov Institute of Physics and Technology' Akademkhna St 1 Kharkiv 61108 Ukraine School of Physics and Technology V.N. Karazin Kharkiv National University Svobody sq. 4 Kharkiv 61022 Ukraine;

    National Technical University 'Kharkiv Polytechnical Institute' Kyrpychova str. 2 Kharkiv 61002 Ukraine;

    Institute of Plasma Physics NSC 'Kharkov Institute of Physics and Technology' Akademkhna St 1 Kharkiv 61108 Ukraine School of Physics and Technology V.N. Karazin Kharkiv National University Svobody sq. 4 Kharkiv 61022 Ukraine;

    Plasma Technology Research Center National Fusion Research Institute 37 Dongjangsan-ro Gunsan-si Jeoliabuk-do 54004 Republic of Korea;

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  • 正文语种 eng
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  • 关键词

    Tungsten; Plasma loads; High-flux; Crack formation; Residual stress; Surface morphology;

    机译:钨;等离子体载荷;高通量;裂缝形成;残余压力;表面形态学;

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