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Role of microstructure and crystallographic orientation in fatigue crack failure analysis of a heavy haul railway rail

机译:微观结构和晶体取向在重型铁路轨道疲劳裂纹破裂分析中的作用

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摘要

Failure analysis studies were carried out on a used rail with head check defects to characterise the effect of microstructural features (i.e. microstructure and crystallographic orientation) on fatigue crack nucleation and propagation. The morphological differences of the pearlitic structure were analysed using secondary electron microscopy and electron backscattered diffraction techniques from non-deformed to deformed areas, as a function of depth distance. Cementite thinning, bending and fragmenting were characterised in a few microns (approximate to 20 mu m) below the rail surface, caused by induced shear strain. The rail surface showed a significant hardness increment (similar to 50%) rather than the initial state of the pearlite morphology. Ferrite peak broadening and the presence of nanocrystalline carbon supersaturated ferrite were observed by X-ray diffraction, attributed to the accumulation of dislocation density in ferrite lamellae and ferrite/cementite interfaces during cyclic train passing. Electron backscattered diffraction analysis of both cracked and crack-resistance areas revealed that the high-distorted Taylor factor grains accompanied by grains oriented {001} parallel to the train running direction were responsible for fatigue crack formation and propagation.
机译:在具有头部检查缺陷的二手导轨上进行失败分析研究,以表征微观结构特征(即微观结构和结晶取向)对疲劳裂纹成核和繁殖的影响。使用二次电子显微镜和电子背散射衍射技术分析珠光体结构的形态学差异,从非变形到变形区域,作为深度距离的函数。胶铁石稀释,弯曲和碎片化的特征在于由诱导剪切应变引起的轨道表面下方的几微米(近似为20μm)。轨道表面显示出显着的硬度增量(类似于50%)而不是珠光体形态的初始状态。通过X射线衍射观察到铁氧体峰扩大和存在纳米晶碳固核铁氧体的存在,归因于铁氧体薄薄和铁素体/渗碳纤维素接口在循环列车通过期间的位错密度的积累。裂纹和抗裂区域的电子背散射衍射分析显示,伴随着火车运行方向的晶粒伴有谷物的高扭曲的泰勒因子粒是负责疲劳裂纹形成和繁殖的原因。

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