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首页> 外文期刊>Applied Surface Science >Effects of fusion relevant transient energetic radiation, plasma and thermal load on PLANSEE double forged tungsten samples in a low- energy plasma focus device
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Effects of fusion relevant transient energetic radiation, plasma and thermal load on PLANSEE double forged tungsten samples in a low- energy plasma focus device

机译:低能等离子体聚焦装置中与熔融有关的瞬态高能辐射,等离子体和热负荷对PLANSEE双锻造钨样品的影响

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摘要

Tungsten is the leading candidate for plasma facing component (PFC) material for thermonuclear fusion reactors and various efforts are ongoing to evaluate its performance or response to intense fusion relevant radiation, plasma and thermal loads. This paper investigates the effects of hot dense decaying pinch plasma, highly energetic deuterium ions and fusion neutrons generated in a low-energy (3.0 kJ) plasma focus device on the structure, morphology and hardness of the PLANSEE double forged tungsten (W) samples surfaces. The tungsten samples were provided by Forschungszentrum Juelich (FZJ), Germany via International Atomic Energy Agency, Vienna, Austria. Tungsten samples were irradiated using different number of plasma focus (PF) shots (1, 5 and 10) at a fixed axial distance of 5 cm from the anode top and also at various distances from the top of the anode (5, 7, 9 and 11 cm) using fixed number (5) of plasma focus shots. The virgin tungsten sample had bcc structure (alpha-W phase). After PF irradiation, the XRD analysis showed (i) the presence of low intensity new diffraction peak corresponding to beta-W phase at (211) crystalline plane indicating the partial structural phase transition in some of the samples, (ii) partial amorphization, and (iii) vacancy defects formation and compressive stress in irradiated tungsten samples. Field emission scanning electron microscopy showed the distinctive changes to non-uniform surface with nanometer sized particles and particle agglomerates along with large surface cracks at higher number of irradiation shots. X-ray photoelectron spectroscopy analysis demonstrated the reduction in relative tungsten oxide content and the increase in metallic tungsten after irradiation. Hardness of irradiated samples initially increased for one shot exposure due to reduction in tungsten oxide phase, but then decreased with increasing number of shots due to increasing concentration of defects. It is demonstrated that the plasma focus device provides appropriate intense fusion relevant pulses for testing the structural, morphological and mechanical changes on irradiated tungsten samples. (C) 2018 Elsevier B.V. All rights reserved.
机译:钨是用于热核聚变反应堆的面向等离子体组件(PFC)材料的主要候选材料,并且正在进行各种努力来评估其性能或对与强聚变有关的辐射,等离子体和热负荷的响应。本文研究了在低能量(3.0 kJ)等离子体聚焦装置中产生的热致密衰减收缩等离子体,高能氘离子和聚变中子对PLANSEE双锻钨(W)样品表面的结构,形态和硬度的影响。钨样品是由德国Forschungszentrum Juelich(FZJ)通过奥地利维也纳国际原子能机构提供的。使用不同数量的等离子体聚焦(PF)射束(1、5和10),以距阳极顶部5 cm的固定轴向距离以及距阳极顶部的各种距离(5、7、9)照射钨样品。和11厘米),使用固定数量(5)的等离子聚焦镜头。原始钨样品具有bcc结构(α-W相)。 PF照射后,XRD分析显示:(i)在(211)晶面上存在与β-W相对应的低强度新衍射峰,表明某些样品中存在部分结构相变;(ii)部分非晶化;以及(iii)辐射钨样品中空位缺陷的形成和压应力。场发射扫描电子显微镜显示,在更高数量的照射次数下,具有纳米级颗粒和颗粒团聚的不均匀表面发生了明显变化,并且表面裂纹较大。 X射线光电子能谱分析表明,辐照后相对氧化钨含量减少,金属钨含量增加。由于氧化钨相的减少,被照射样品的硬度最初因一枪暴露而增加,但随后由于缺陷浓度的增加而随着枪注次数的增加而降低。已经证明,等离子体聚焦装置提供适当的与强聚变有关的脉冲,以测试照射的钨样品上的结构,形态和机械变化。 (C)2018 Elsevier B.V.保留所有权利。

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