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Microscopic stress characterisation of functional iron-based alloys by white X-ray microbeam diffraction

机译:白X射线微沟衍射功能铁基合金的显微应力表征

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Microscopic residual stress evolution in an austenite (y) grain during a shape-memory process in an Fe-Mn—Si-Cr alloy was investigated using the white X-ray microbeam diffraction technique. The stresses were measured on a coarse grain, which had an orientation near <144>, parallel to the tensile loading direction with a high Schmid factor for a martensitic transformation. The magnitude of the residual stresses in a grain of the sample, which was subjected to a 23 % tensile strain and subsequent shape-recovery heating, was found to be very small and comparable to that prior to tensile deformation. Measurements of the recovery strain and microstructural analyses using electron backscatter diffraction suggested that the low residual stresses could be attributed to the significant shape recovery caused by a highly reversible martensitic transformation in the grain with a particular orientation.
机译:使用白色X射线微沟衍射技术研究了Fe-Mn-Si-Cr合金中的形状记忆过程中奥氏体(Y)颗粒中的微观残余应力演化。在粗粒上测量应力,该粗晶粒在<144>附近的取向,与拉伸负载方向平行,具有高乳糜霉素的用于马氏体转变。发现样品晶粒中的残余应力的大小,其进行23%拉伸菌株和随后的形状回收加热,其非常小,与拉伸变形之前的相当。使用电子反向散射衍射测量应变和微观结构分析表明,低残余应力可能归因于具有特定方向的晶粒中高度可逆的马氏体转换引起的显着形状恢复。

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