Yang Bing, Wang Shuancheng, Li Jian, Ding Xianwang, Xiao Qian, Xiao Shoune
State Key Laboratory of Performance Monitoring and Protecting of Rail Transit Infrastructure, East China Jiaotong University, Nanchang 330013, China.
State Key Laboratory of Traction Power, Southwest Jiaotong University, Chengdu 610031, China.
Materials (Basel). 2023 Apr 9;16(8):2981. doi: 10.3390/ma16082981.
Affected by the service environment, the actual service conditions of rail steel are complex, and the safety evaluation methods are limited. In this study, the fatigue crack propagation in the U71MnG rail steel crack tip was analysed by means of the DIC method, focusing on the shielding effect of the plastic zone at the crack tip. The crack propagation in the steel was analysed based on a microstructural approach. The results show that the maximum value of stress of the wheel-rail static contact and rolling contact is in the subsurface of the rail. The test grain size of the material selected along the L-T direction is smaller than that in the L-S one. Within a unit distance, if the grain size is smaller, the number of grains or grain boundaries will be greater so that the driving force required for a crack to pass through the grain boundary barriers will be larger. The Christopher-James-Patterson (CJP) model can well describe the contour of the plastic zone and can well characterize the influence of crack tip compatible stress and the crack closure effect on crack propagation under different stress ratios. The crack growth rate curve at the high-stress ratio is shifted to the left relative to the low-stress ratio, and the crack growth rate curves obtained under different sampling methods have good normalization.
受服役环境影响,钢轨钢材实际服役条件复杂,安全评估方法有限。本研究采用数字图像相关(DIC)方法分析U71MnG钢轨钢裂纹尖端的疲劳裂纹扩展,重点关注裂纹尖端塑性区的屏蔽效应。基于微观结构方法分析了钢材中的裂纹扩展。结果表明,轮轨静态接触和滚动接触的应力最大值位于钢轨次表层。沿L-T方向选取的材料试验晶粒度小于L-S方向的。在单位距离内,晶粒度越小,晶粒或晶界数量越多,裂纹穿过晶界障碍所需的驱动力就越大。克里斯托弗-詹姆斯-帕特森(CJP)模型能够很好地描述塑性区轮廓,能够很好地表征不同应力比下裂纹尖端相容应力和裂纹闭合效应对裂纹扩展的影响。高应力比下的裂纹扩展速率曲线相对于低应力比向左偏移,不同采样方法得到的裂纹扩展速率曲线具有良好的归一化。