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Damage mechanism of slab track under the coupling effects of train load and water

机译:车水耦合作用下平板轨道的损伤机理

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摘要

The damage mechanism of slab track under the coupling effect of train load and water was studied in this research. Based on the law of mass conservation and momentum theorem, the hydrodynamic pressure expression was derived by using the control volume method. The effects of load characters, water viscosity, and crack shape were analyzed in this paper. In order to describe the stress field singularity of crack tip, the quarter-points elements at the crack tip were established, and the maximum tensile-stress criterion and mixed fracture criterion were used to analyze the coupled hydro-mechanical fracture of slab track. Through the presented analysis, it was determined that, the effect of water viscosity on hydrodynamic pressure is negligible when crack aperture is greater than 2 mm, and the value of hydrodynamic pressure depends linearly on axle load and is proportional to the square of train speed. The train speed is an important factor to affecting the crack propagation, and the crack propagation rate increases with the increasing train speed. It is concluded from the research that the mixed-model fracture criterion is more appropriate to analyze the coupled hydro-mechanical fracture of slab track than the maximum tensile stress criterion. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了列车荷载与水耦合作用下平板轨道的损伤机理。根据质量守恒定律和动量定理,采用控制体积法推导了动水压力表达式。分析了载荷特性,水粘度和裂纹形状的影响。为了描述裂纹尖端的应力场奇异性,建立了裂纹尖端的四分点单元,并利用最大拉应力准则和混合断裂准则来分析板轨道的水力耦合断裂。通过提出的分析确定,当裂纹孔径大于2 mm时,水的粘度对流体动力压力的影响可忽略不计,流体动力压力的值与车轴载荷成线性关系,并且与列车速度的平方成正比。列车速度是影响裂纹扩展的重要因素,裂纹扩展速率随列车速度的增加而增加。从研究中得出的结论是,混合模型断裂准则比最大拉伸应力准则更适合于分析平板轨道的水力耦合断裂。 (C)2016 Elsevier Ltd.保留所有权利。

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