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Current status and critical issues for development of SiC composites for fusion applications

机译:聚变用SiC复合材料的开发现状和关键问题

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Silicon carbide (SiC)-based ceramic composites have been studied for fusion applications for more than a decade. The potential for these materials have been widely discussed and is now understood to be (1) the ability to operate in temperature regimes much higher than for metallic alloys, (2) an inherent low level of long-lived radioisotopes that reduces the radiological burden of the structure, and (3) perceived tolerance against neutron irradiation up to high temperatures. This paper reviews the recent progress in development, characterization, and irradiation effect studies for SiC composites for fusion energy applications. It also makes the case that SiC composites are progressing from the stage of potential viability and proof-of-principle to one where they are ready for system demonstration, i.e., for flow channel inserts in Pb-Li blankets. Finally, remaining general and specific technical issues for SiC composite development for fusion applications are identified. (c) 2007 Elsevier B.V. All rights reserved.
机译:碳化硅(SiC)基陶瓷复合材料已被研究用于融合应用十多年。这些材料的潜力已被广泛讨论,现在被认为是(1)在比金属合金高得多的温度范围内工作的能力;(2)长寿命放射性同位素固有的低含量,可减轻放射性同位素的放射性负担。 (3)在高温下对中子辐射的耐受性。本文综述了用于聚变能应用的SiC复合材料的开发,表征和辐照效应研究的最新进展。这也使得SiC复合材料正从潜在的可行性和原理验证阶段发展到可以用于系统演示的阶段,即用于Pb-Li毯子中的流道插入物的阶段。最后,确定了用于融合应用的SiC复合材料开发的其余一般和特定技术问题。 (c)2007 Elsevier B.V.保留所有权利。

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