车辆-沥青路面耦合系统相互作用研究

银花;李懿

振动与冲击 ›› 2013, Vol. 32 ›› Issue (20) : 107-112.

PDF(1447 KB)
PDF(1447 KB)
振动与冲击 ›› 2013, Vol. 32 ›› Issue (20) : 107-112.
论文

车辆-沥青路面耦合系统相互作用研究

  • 银花1,李懿2
作者信息 +

Research on interaction of vehicle-the asphalt pavement coupling system

  • YIN Hua1,LI Yi2
Author information +
文章历史 +

摘要

在路面随机激励的时域仿真模型上选用双自由度的四分之一车辆振动模型建立了车辆-路面振动模型。同时基于分数阶导数沥青混合料粘弹性模型,建立了沥青路面结构二维有限元模型,并通过车辆与路面之间的几何和力学耦合关系,推导出车辆-路面耦合系统的分数阶动力学状态方程,求解其动态响应。在此基础上进行了车辆-沥青路面耦合系统相互作用的数值分析。分析表明,通过动态模量试验,采用分数阶导数三元件模型描述沥青混合料的动态粘弹性能进行路面数值模拟,更接近于路面结构实际的动态响应;路面平整度对随机动载荷的大小其决定作用,路面等级的降低会增加路面的动变形,进而会加速路面不平整度的发展及路面的破坏,应控制好路面平整度及施工质量,加强路面养护。

Abstract

Double of the freedom of a quarter vehicle vibration model is adopted to establish the vehicle-the vibration model on the simulation model of random excitation time domain. At the same time based on fractional order derivative asphalt mixture viscoelastic model, the asphalt pavement structure 2D finite element model is established, and through the vehicle and the pavement between geometry and mechanics coupling relationship, fractional order dynamic state equation of vehicles-the pavement coupling systems is deduced, solving the dynamic response. Based on this numerical value of the interaction of vehicle-the asphalt pavement coupled system was analyzed. Analysis shows that, through the dynamic modulus experiments, the fractional order derivative three components of asphalt mixture model to describe the dynamic viscoelastic can be adopted to simulate the numerical, this is more close to the dynamic response of the actual pavement structure; Pavement roughness determines the size of the random dynamic load, the road surface level will increase the move lower deformation, and will accelerate the development of road surface unevenness and pavement damage, so we should control the road surface roughness and construction quality, strengthen the pavement maintenance.


关键词

沥青混合料 / 分数阶导数 / 粘弹性 / 路面不平整度 / 车辆-路面相互作用

Key words

Asphalt mixture / Fractional order derivative / Viscoelastic / Road roughness / vehicle-road interaction

引用本文

导出引用
银花;李懿. 车辆-沥青路面耦合系统相互作用研究[J]. 振动与冲击, 2013, 32(20): 107-112
YIN Hua;LI Yi. Research on interaction of vehicle-the asphalt pavement coupling system[J]. Journal of Vibration and Shock, 2013, 32(20): 107-112

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