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首页> 外文期刊>Journal of Applied Crystallography >Neutron time-of-flight diffraction used to study aged duplex stainless steel at small and large deformation until sample fracture
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Neutron time-of-flight diffraction used to study aged duplex stainless steel at small and large deformation until sample fracture

机译:中子飞行时间衍射用于研究小变形和大变形直至试样断裂的时效双相不锈钢

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摘要

Owing to its selectivity, diffraction is a powerful tool for analysing the mechanical behaviour of polycrystalline materials at the mesoscale (phase and/or grain scale). In situ neutron diffraction during tensile tests and elastoplastic self-consistent modelling were used to study slip phenomena occurring on crystallographic planes at small and large deformation. The critical resolved shear stresses in both phases of duplex stainless steel were found for samples subjected to different thermal treatments. The evolution of grain loading was also determined by showing the large differences between stress concentration for grains in ferritic and austenitic phases. It was found that, for small loads applied to the sample, linear elastic deformation occurs in both phases. When the load increases, austenite starts to deform plastically, while ferrite remains in the elastic range. Finally, both phases undergo plastic deformation until sample fracture. By using an original calibration of diffraction data, the range of the study was extended to large sample deformation. As a result, mechanical effects that can be attributed to damage processes initiated in ferrite were observed.
机译:由于其选择性,衍射是分析中晶尺度(相和/或晶粒尺度)下多晶材料力学行为的有力工具。在拉伸试验和弹塑性自洽模型中的原位中子衍射被用来研究在小变形和大变形下在晶体学平面上发生的滑动现象。对于经受不同热处理的样品,发现了双相不锈钢两个相中的临界解析剪切应力。还通过显示出铁素体和奥氏体相中晶粒的应力集中之间的巨大差异来确定晶粒载荷的演变。已经发现,对于施加到样品的小载荷,在两个阶段都发生线性弹性变形。当载荷增加时,奥氏体开始塑性变形,而铁素体保持在弹性范围内。最后,两个阶段都发生塑性变形,直到样品破裂。通过使用衍射数据的原始校准,研究范围扩展到大样品变形。结果,观察到归因于铁素体中引发的损伤过程的机械效应。

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