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Tungsten carbide as a deoxidation agent for plasma-facing tungsten-based materials

机译:碳化钨作为面向等离子体的钨基材料的脱氧剂

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Tungsten (W) and various composites are being considered as the primary plasma-facing materials for fusion reactors. Like all engineering materials, they contain certain levels of impurities, which can have an important impact on mechanical properties. In the present work, oxygen was identified as a major impurity in our starting tungsten powder. At elevated temperatures, the presence of interstitial elements such as oxygen leads to the formation of an oxide-rich tungsten phase at the tungsten grain boundaries. In this study, we determined the capacity of tungsten carbide (WC) nanoparticles to remove the oxide impurities from a tungsten body. Tungsten composites with 0.05, 0.25 and 0.51 wt. % carbon (C) in the form of WC were sintered using a field-assisted sintering technique (FAST) at 1900 degrees C for 5 min. The sintered samples were characterized using field-emission scanning and transmission electron microscopy. Thermodynamic and kinetic considerations allowed us to determine the optimum theoretical amount of WC to prevent the in-situ formation of WO2. (C) 2019 The Author(s). Published by Elsevier B.V. All rights reserved.
机译:钨(W)和各种复合材料被认为是融合反应器的主要等离子体材料。与所有工程材料一样,它们含有一定程度的杂质,这可能对机械性能产生重要影响。在本作工作中,氧被鉴定为我们开始钨粉中的主要杂质。在升高的温度下,存在诸如氧气的间质元素的存在导致在钨晶界处形成富含氧化钨相的。在这项研究中,我们确定了碳化钨(WC)纳米颗粒从钨体中除去氧化杂质的能力。钨复合材料0.05,0.25和0.51重量%。使用现场辅助的烧结技术(快速)在1900℃下烧结Wc形式的%碳(C)5分钟。使用现场排放扫描和透射电子显微镜表征烧结样品。热力学和动力学考虑允许我们确定WC的最佳理论量,以防止WO2的原位形成。 (c)2019年作者。由elsevier b.v出版。保留所有权利。

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