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Research on pavement longitudinal crack propagation under non-uniform vehicle loading

机译:车辆非均匀载荷作用下路面纵向裂纹扩展的研究

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摘要

The top-down crack (TDC) has become the major cracking mechanism in thick pavement structure, especially for the perpetual pavement. The heavy-vehicle load condition plays a key role in the fracture characteristics of pavement cracks. A three-dimensional finite ele ment (FE) model of the tire tread rubber-block and the pavement is established to describe the stress-strain field of the pavement with TDC. The three-directional friction condition and non-uniform distribution between tire and pavement are especially considered. Then the orthogonal Design of Experiment method is applied to discuss the effect law of fracture characteristics for the longitudinal crack affected by the multiple loading parameters simultaneously. Based on the statistics and data analysis of the diverse test results, it found there is a nonlinear relationship between the equivalent stress intensity factor of the pavement and the load parameters.The longitudinal distance (from the load location to the center of the crack port) has a great influence on the equivalent stress intensity factor. The equivalent stress intensity factor of the crack port is more than double the crack ti buried in pavement, which extends in II/III composite type mostly. The simulation resull can be used as reference for the further study on the fracture mechanism of pavemer cracks and their control technique.
机译:自上而下的裂缝(TDC)已成为厚路面结构中的主要开裂机理,特别是对于永久路面。重载条件在路面裂缝的断裂特性中起着关键作用。建立了轮胎胎面胶块和路面的三维有限元模型,用TDC描述了路面的应力-应变场。特别考虑了轮胎的三向摩擦条件和路面与路面之间的不均匀分布。然后采用正交试验设计方法探讨了断裂特性对同时受多个载荷参数影响的纵向裂纹的影响规律。在对各种试验结果进行统计和数据分析的基础上,发现路面等效应力强度因子与荷载参数之间存在非线性关系,纵向距离(从荷载位置到裂缝口中心)对等效应力强度因子有很大的影响。裂纹端口的等效应力强度因子是埋在路面中的裂纹ti的两倍以上,裂纹主要在II / III复合类型中扩展。仿真结果可为进一步研究铺路裂缝的断裂机理及其控制技术提供参考。

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