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Subsurface Fatigue Crack Generation and Strain Incompatibility Near Grain Boundaries for a Nitrogen-strengthened Austenitic Steel at Cryogenic Temperatures

机译:低温下氮强化奥氏体钢的表面疲劳裂纹产生和应变不相容性

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摘要

Fatigue damage in nitrogen-strengthened austenitic steel that showed subsurface crack generation and intergranular cracking at cryogenic temperatures has been characterized using electron backscatter diffraction (EBSD) analysis. Strain gradients near grain boundaries and localized stress concentrations in grains were clearly detected. The strain gradient in the vicinity of a grain boundary accompanied a misorientation of a few degrees, and may result from co-planar dislocation arrays at the grain boundary. To reduce localized strain incompatibility at grain boundaries, fine-grained duplex microstructure was obtained through partial re-crystallization. The treated material showed considerably improved high-cycle fatigue strength and more homogenous plastic deformation.
机译:使用电子背散射衍射(EBSD)分析已表征了氮强化奥氏体钢的疲劳损伤,该疲劳损伤显示出在低温下的表面裂纹产生和晶间裂纹。清楚地检测到晶界附近的应变梯度和晶粒中的局部应力集中。晶界附近的应变梯度伴随着几个方向的错误取向,并且可能是由晶界处的共面位错阵列引起的。为了减少晶界的局部应变不相容性,通过部分重结晶获得了细晶粒的双相组织。经处理的材料显示出明显改善的高周疲劳强度和更均匀的塑性变形。

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