An investigation into the constitutive relation of corrugated metro rail material based on nano-indentation experiment and inverse analysis

Shuai Chen, Guotang Zhao, Jian Han, Ping Wang, Hengyu Wang
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Abstract

To establish the constitutive relation of corrugated rail material, rail corrugation was reproduced. The material mechanical properties of corrugation peaks and troughs were obtained by experiment. A set of dimensionless functions was proposed for the elastic modulus, hardness and yield stress at arbitrary depth of corrugation peaks and troughs. By combining the finite element model and dimensional functions, the constitutive relations were obtained at different vertical and lateral positions of corrugation. The closer the material is to the rail surface, the larger the mechanical property values. The elastic modulus and hardness of corrugated rail material at the trough surface are higher than those at the peak, while the yield stress at the peak surface is higher than the trough.
基于纳米压痕实验和反分析的波纹地铁轨道材料构成关系研究
为了建立波纹轨道材料的构成关系,对轨道波纹进行了再现。通过实验获得了波纹峰和波纹槽的材料力学特性。为波纹峰和波纹槽任意深度处的弹性模量、硬度和屈服应力提出了一组无量纲函数。结合有限元模型和尺寸函数,得到了波纹不同垂直和横向位置的构成关系。材料越靠近轨道表面,机械性能值越大。波纹轨道材料在波谷表面的弹性模量和硬度高于波峰表面,而波峰表面的屈服应力高于波谷表面。
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