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Numerical simulation of rolling contact fatigue crack growth in rails with the rail bending and the frictional contact

机译:轨道弯曲滚动疲劳裂纹裂纹生长的数值模拟及摩擦接触

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摘要

Due to the repeated passages of the wheels, the rail is subjected to time-dependent, multiaxial, non-proportional, mixed mode cyclic loading. Under these conditions of loading, the fatigue cracks can appear in the surface or subsurface of the rails. This paper attempts to investigate the multiaxial fatigue crack growth in rails using 3D numerical simulations taking into account the frictional contact between crack faces and the rail bending. Firstly, a quick description is given of the two-scale strategy (global structure and local interface) for the cracked body problem with frictional contact between the crack faces. In this strategy, a stabilized three-field weak formulation is proposed to avoid possible oscillations in the local solution linked to the LBB condition. This formulation is discretized within the framework of the eXtended Finite Element Method (XFEM). Then, the LATIN non-linear solver is used to solve the two-scale problem. Secondly, we focus on the 3D railway track model with an initial crack on the rail surface. The sleepers and the rail fastenings are modelled by introducing constraints on the vertical displacement of some nodes on the rail foot. This 3D cracked rail model is used to simulate the propagation of different types of crack (in curve, in straight line) under the multiaxial wheel-rail contact loading. Finally, a parametric study is investigated in order to clarify the influence of the friction coefficient between crack faces, the position of the crack in relation to the sleepers and the stiffness of the track on the crack growth behavior. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于车轮的重复通道,轨道经受时间依赖,多轴,非比例的混合模式循环载荷。在这些装载条件下,疲劳裂缝可以出现在轨道的表面或地下。本文试图使用3D数值模拟来研究轨道的多轴疲劳裂纹增长,考虑到裂纹面和轨道弯曲之间的摩擦接触。首先,在裂纹面之间的摩擦接触的裂纹体问题上给出了快速描述的两尺度策略(全局结构和局部接口)。在该策略中,提出了一种稳定的三场弱配方,以避免与LBB条件相关的局部解决方案中的可能振荡。该配方在扩展有限元方法(XFEM)的框架内被离散化。然后,拉丁语非线性求解器用于解决两个规模的问题。其次,我们专注于带有轨道表面上的初始裂缝的3D铁路轨道模型。枕木和轨道紧固件是通过在轨道上的一些节点的垂直位移上引入限制来建模的。该3D裂纹导轨模型用于在多轴轮轨接触载荷下模拟不同类型的裂缝(曲线,直线)的传播。最后,研究了参数研究,以阐明裂纹面之间的摩擦系数的影响,裂缝与睡眠者的裂缝的位置和曲线上的裂缝生长行为的刚度。 (c)2016 Elsevier Ltd.保留所有权利。

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