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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Review on the explosive consolidation methods to fabricate tungsten based PFMs
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Review on the explosive consolidation methods to fabricate tungsten based PFMs

机译:爆炸固结法制备钨基PFM的方法综述

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Tungsten is one of the best candidates, for plasma-facing materials in the fusion reactors, owing to its many unique properties. In the development of tungsten-based Plasma Facing Materials/Components (PFMs/PFCs), materials scientists have explored many different, innovative preparation and processing routes to meet the requirement of International Thermonuclear Experimental Reactor (ITER). Some explosive consolidation technology intrinsic characteristics, which make it suitable for powder metallurgy (powders consolidation) and PFMs production, are the high pressure processing, highly short heating time and can be considered as a highly competitive green technology. In this work, an overview of explosive consolidation techniques applied to fabricate tungsten-based PFMs is presented. Emphasis is given to describe the main characteristics and potentialities of the explosive sintering, explosive consolidation techniques. The aspects presented and discussed in this paper indicate the explosive consolidation processes as a promising and competitive technology for tungsten-based PFMs processing. (C) 2014 Elsevier B.V. All rights reserved.
机译:钨是聚变反应堆中面向等离子体的材料的最佳候选材料之一,因为它具有许多独特的性能。在开发钨基面向等离子体的材料/组件(PFM / PFC)时,材料科学家探索了许多不同的创新制备和加工路线,以满足国际热核实验反应堆(ITER)的要求。爆炸性固结技术的一些固有特性使其适用于粉末冶金(粉末固结)和PFM生产,它们具有高压工艺,极短的加热时间,可以被认为是极具竞争力的绿色技术。在这项工作中,介绍了用于制造钨基PFM的爆炸性固结技术的概述。重点介绍炸药烧结,炸药固结技术的主要特征和潜力。本文介绍和讨论的各个方面表明爆炸性固结过程是钨基PFM加工的一种有前途且具有竞争力的技术。 (C)2014 Elsevier B.V.保留所有权利。

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