制作
焊接
材料科学
融合
微观结构
聚变能
机械加工
铁氧体(磁铁)
爆炸焊接
核工程
熔焊
冶金
机械工程
等离子体
复合材料
工程类
电弧焊
核物理学
病理
哲学
物理
填充金属
医学
语言学
替代医学
作者
M. Rieth,Michael Dürrschnabel,Simon Bonk,U. Jäntsch,Thomas Bergfeldt,J. Hoffmann,Steffen Antusch,E. Simondon,M. Klimenkov,Carsten Bonnekoh,Bradut-Eugen Ghidersa,Heiko Neuberger,Jörg Rey,Christian Zeile,G. Pintsuk,Giacomo Aiello
出处
期刊:Applied sciences
[Multidisciplinary Digital Publishing Institute]
日期:2021-12-08
卷期号:11 (24): 11653-11653
被引量:20
摘要
Plasma facing components for energy conversion in future nuclear fusion reactors require a broad variety of different fabrication processes. We present, along a series of studies, the general effects and the mutual impact of these processes on the properties of the EUROFER97 steel. We also consider robust fabrication routes, which fit the demands for industrial environments. This includes heat treatment, fusion welding, machining, and solid-state bonding. Introducing and following a new design strategy, we apply the results to the fabrication of a first-wall mock-up, using the same production steps and processes as for real components. Finally, we perform high heat flux tests in the Helium Loop Karlsruhe, applying a few hundred short pulses, in which the maximum operating temperature of 550 °C for EUROFER97 is finally exceeded by 100 K. Microstructure analyses do not reveal critical defects or recognizable damage. A distinct ferrite zone at the EUROFER/ODS steel interface is detected. The main conclusions are that future breeding blankets can be successfully fabricated by available industrial processes. The use of ODS steel could make a decisive difference in the performance of breeding blankets, and the first wall should be completely fabricated from ODS steel or plated by an ODS carbon steel.
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