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W + Cu and W + Ni Composites and FGMs Prepared by Plasma Transferred Arc Cladding

机译:W + Cu和W + Ni复合材料和通过等离子体转移弧形包层制备的FGM

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摘要

Tungsten-based materials are the most prospective candidates for plasma-facing components of future fusion devices, such as DEMO. W-based composites and graded layers can serve as stress-relieving interlayers for the joints between plasma-facing armor and the cooling or structural parts. Coating/cladding techniques offer the advantages of eliminating the joining step and the ability to coat large areas, even on nonplanar shapes. In this work, W + Cu and W + Ni composites were prepared by pulsed plasma transferred arc (PTA) cladding on several different substrates. Optimization of the process was carried out with respect to powder mixture composition and process parameters like arc current, plasma gas composition, and traverse velocity. Dense claddings of several millimeters thickness and various W content were achieved. Moreover, multilayers with W content gradually varying from 47 to 92% were formed. The structure, compositional profiles, and thermal properties of the claddings were characterized.
机译:基于钨的材料是对面向等离子体组件的最佳候选者,如演示。基于基于的复合材料和分级层可以用作压力缓解等离子体铠装和冷却或结构部件之间的关节的关节。涂层/包层技术提供了消除加入步骤的优势和即使在非平面形状上也能够加入大面积的能力。在该工作中,通过在几种不同的基板上通过脉冲等离子体转移的弧(Pta)包层制备W + Cu和W + Ni复合材料。相对于粉末混合物组合物和工艺参数,如电弧电流,等离子体气体组合物和横向速度,对该方法进行优化。实现了数毫米厚度和各种W含量的密集衬垫。此外,形成了逐渐变化从47至92%逐渐变化的多层。特征在于包层的结构,组成曲线和热性质。

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