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Joining of tungsten with low-activation ferritic–martensitic steel and vanadium alloys for demo reactor

机译:钨与低活化铁素体-马氏体钢和钒合金的连接,用于演示反应堆

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The conceptual designs of the blanket and the helium-cooled divertor of the DEMO reactor require joining of reduced activation steel (for example RUSFER EK-181, EUROFER, etc.) and tungsten. Significant differences in their physical properties can lead to the generation of the stresses during cooling and, as a result, to the failure of the joint. In this paper, diffusion brazing of RUSFER EK-181 steel with tungsten using a V–4Ti–4Cr interlayer was obtained. Rapidly-quenched ribbon brazing alloys based on copper of various compositions were used. Brazing was carried out in vacuum furnaces at temperatures in the range of 800–1000?°C. The structural-phase states of the joints obtained were studied, the microhardness was measured, and thermocycling tests were performed in the interval of 700 to 25?°C. FEM simulation was used to calculate the optimal thickness of the interlayer.
机译:覆盖层和DEMO反应器的氦冷却分流器的概念设计要求将还原活化钢(例如RUSFER EK-181,EUROFER等)和钨连接起来。它们物理性质的显着差异可能会导致冷却过程中产生应力,并因此导致接头失效。在本文中,使用V-4Ti-4Cr中间层获得了RUSFER EK-181钢与钨的扩散钎焊。使用基于各种成分的铜的快速淬火带状钎料合金。钎焊在真空炉中于800–1000?C的温度范围内进行。研究获得的接头的结构相态,测量其显微硬度,并在700至25°C的温度范围内进行热循环测试。有限元模拟被用来计算中间层的最佳厚度。

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