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Simulation of Flash-Butt Welding Process of a Railway Steel. Part 1: Residual Stress Analysis Via FEM

机译:铁路钢闪光焊接工艺仿真。第1部分:通过FEM的残余应力分析

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Long rails, welded by the Flash-Butt Welding (FBW) process, are the reality of the Brazilian railroads for medium and high axle loads. Although they present desirable characteristics concerning the dynamic behavior of the track, welded joints are regions of structural and mechanical discontinuity where high residual stresses originate, and, consequently, premature fatigue failures may take place. This paper employs the Finite Element Method (FEM) to carry out transient, physically non-linear thermo-mechanical analyses to evaluate residual stresses evolved in the welding process. A new approach is proposed to take into account the heat input involved in the process. The numerical results are compared to experimentally measured surface residual stresses, and to the macrographic joint aspects, including the HAZ width and cooling rate data. The results show a good correlation between the numerical and experimental measurements of residual stresses. Fundamental aspects related to the development of residual stresses are clarified, correlating numerical and experimental analyses. In addition, it is verified that the computational models can be used to predict critical crack nucleation points by fatigue, and/or to evaluate effects of process parameters on the residual stress field.
机译:通过闪光对接焊接(FBW)工艺焊接的长导轨是中高轴载荷的巴西铁路的现实。尽管它们存在关于轨道动态行为的理想特征,但是焊接接头是结构和机械不连续区域的区域,其中高残余应力源自,因此可能发生过早疲劳失败。本文采用有限元方法(FEM)来执行瞬态,物理非线性热机械分析,以评估焊接过程中演化的残余应力。提出了一种新的方法来考虑过程中涉及的热量输入。将数值结果与实验测量的表面残余应力进行比较,以及宏观关节方面,包括HAZ宽度和冷却速率数据。结果显示了残余应力的数值和实验测量与实验测量之间的良好相关性。澄清了与剩余应力的发展相关的基本方面,有关数值和实验分析。此外,验证了计算模型可用于通过疲劳预测临界裂缝成核点,和/或评估处理参数对残余应力场的影响。

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