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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Tensile deformation behavior and microstructure evolution of Ni-based superalloy 617
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Tensile deformation behavior and microstructure evolution of Ni-based superalloy 617

机译:镍基高温合金617的拉伸变形行为及组织演变

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The mechanisms of deformation were investigated in a nickel-based alloy (Inconel 617) of interest for the Intermediate Heat Exchanger (IHX) for the very high temperature reactor (VHTR). Tensile tests at 25 ℃, 600℃,800 ℃, and 950 ℃ were conducted in air at different strain rates. The tests were followed by electron microscopy analysis (including FE-SEM,TEM, EDX). The tensile property measurements and the metallographic examination of tested specimens allowed relating the deformation behavior with the microstructural changes in the material. The temperature and strain rate impact on the properties was assessed. The results and microstructure observations were discussed in terms of serrated flow associated with dynamic strain ageing, precipitate evolution, and softening processes due to dynamic recrystallization.
机译:在用于高温反应堆(VHTR)的中间热交换器(IHX)的目标镍基合金(Inconel 617)中研究了变形的机理。在空气中以不同的应变速率在25℃,600℃,800℃和950℃下进行拉伸试验。在测试之后进行电子显微镜分析(包括FE-SEM,TEM,EDX)。测试样品的拉伸性能测量和金相检查允许将变形行为与材料的微观结构变化联系起来。评估了温度和应变速率对性能的影响。根据与动态应变时效,析出物析出以及动态再结晶引起的软化过程相关的锯齿状流,讨论了结果和微观结构观察。

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