再生橡胶垫对冲击载荷下压载物性能的影响:实验与数值模拟

Trung Ngo, Buddhima Indraratna, Matthew Coop, Yujie Qi
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摘要

在列车行驶过程中,由车轮缺陷或钢轨异常引起的动态冲击载荷会导致严重的道砟退化。在这项研究中,使用由回收轮胎制造的橡胶垫放置在压载物层下面,以减轻冲击载荷的不利影响。基于在高容量落锤设备上进行的一系列测试来评估动态冲击响应,实验结果表明,在镇流器组件下方包含橡胶垫可显着减少颗粒破碎。本研究还描述了采用耦合离散-连续统建模方法进行的数值分析,以检查离散压载颗粒与再生橡胶垫的复杂相互作用。特别是,开发了耦合离散和连续域的数学框架,以促进压载-垫界面的力和位移交换。从大型冲击试验中测量的实验室数据用于校准和验证该耦合模型。随后,利用该模型预测了冲击试验过程中镇流器的变形和破碎、接触力分布、冲击力、协调数以及能量分量的演化。从微观力学的角度来看,橡胶垫的吸能特性是在减少颗粒破碎方面捕获的。
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Influence of recycled rubber mat on the behaviour of ballast under impact loading: experimental and numerical modelling
During the passage of trains, dynamic impact loads caused by wheel imperfections or rail abnormalities cause significant ballast degradation. In this study, the use of rubber mats manufactured from recycled tyres placed underneath a ballast layer is investigated to mitigate the adverse effects of impact loads. Based on a series of tests conducted using a high-capacity drop-weight facility to evaluate the dynamic impact responses, the experimental results show that the inclusion of a rubber mat beneath the ballast assembly significantly reduces particle breakage. This study also describes a numerical analysis following a coupled discrete-continuum modelling approach to examine the complex interaction of discrete ballast grains with the recycled rubber mat. In particular, a mathematical framework coupling the discrete and continuum domains is developed to facilitate the exchange of forces and displacements at the ballast-mat interface. Laboratory data measured from large-scale impact tests are used to calibrate and validate this coupled model. Subsequently, the model is used to predict the deformation and breakage of ballast, contact force distributions, impact forces, coordination numbers and the evolution of energy components during impact testing. The energy-absorbing properties of the rubber mat are captured in terms of reducing particle breakage from a micro-mechanical perspective.
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