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Overview of processing technologies for tungsten-steel composites and FGMs for fusion applications

机译:钨钢复合材料和熔融应用的FGM的加工技术概述

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摘要

Tungsten is a prime candidate material for the plasma-facing components in future fusion devices, e.g. ITER and DEMO. Because of the harsh and complex loading conditions and the differences in material properties, joining of the tungsten armor to the underlying construction and/or cooling parts is a complicated issue. To alleviate the thermal stresses at the joint, a sharp interface may be replaced by a gradual one with a smoothly varying composition. In this paper, several techniques for the formation of tungsten-steel composites and graded layers are reviewed. These include plasma spraying, laser cladding, hot pressing and spark plasma sintering. Structure, composition and selected thermal and mechanical properties of representative layers produced by each of these techniques are presented. A summary of advantages and disadvantages of the techniques and an assessment of their suitability for the production of plasma-facing components is provided.
机译:钨是未来聚变设备中面向等离子体组件的主要候选材料。 ITER和DEMO。由于苛刻和复杂的负载条件以及材料性能的差异,将钨铠装连接到下面的结构和/或冷却部件是一个复杂的问题。为了减轻接头处的热应力,可以用组成平滑变化的渐进界面代替尖锐的界面。本文综述了几种钨钢复合材料和梯度层形成技术。这些包括等离子喷涂,激光熔覆,热压和火花等离子烧结。介绍了通过这些技术中的每一种产生的代表性层的结构,组成以及选定的热和机械性能。提供了该技术的优点和缺点的摘要,并评估了它们对于生产面向等离子体的组件的适用性。

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