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Microstructure development in a high-nickel austenitic stainless steel using EBSD during in situ tensile deformation

机译:原位拉伸变形过程中使用EBSD的高镍奥氏体不锈钢的显微组织发展

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摘要

Plastic deformation of surface grains has been observed by electron backscatter diffraction technique during in situ tensile testing of a high-nickel austenitic stainless steel. The evolution of low- and high-angle boundaries as well as the orientation changes within individual grains has been studied. The number of low-angle boundaries and their respective misorientation increases with increasing strain and some of them also evolve into high-angle boundaries leading to grain fragmentation. The annealing twin boundaries successively lose their integrity with increasing strain. The changes in individual grains are characterized by an increasing spread of orientations and by grains moving towards more stable orientations with 〈111〉 or 〈001〉 parallel to the tensile direction. No deformation twins were observed and deformation was assumed to be caused by dislocation slip only.
机译:在高镍奥氏体不锈钢的原位拉伸测试过程中,已经通过电子反向散射衍射技术观察到了表面晶粒的塑性变形。研究了低角度和高角度边界的演变以及各个晶粒内的取向变化。随着应变的增加,低角度边界的数量和它们各自的取向错误会增加,其中一些也会演变为高角度边界,从而导致晶粒破碎。退火孪晶边界随着应变的增加而连续丧失其完整性。各个晶粒的变化的特征在于取向的扩散增加,并且晶粒朝向更稳定的取向移动,其中平行于拉伸方向的是<111>或<001>。没有观察到形变孪晶,并且假定形变仅由位错滑移引起。

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