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钢桥面铺装混合料三轴重复加载试验变形特性
引用本文:杨军,朱浩然,崔娟.钢桥面铺装混合料三轴重复加载试验变形特性[J].交通运输工程学报,2008,8(6):24-28.
作者姓名:杨军  朱浩然  崔娟
作者单位:东南大学交通学院,江苏省交通规划设计院
基金项目:教育部留学回国人员基金项目  
摘    要:为了研究钢桥面铺装材料的高温变形特性及其车辙预估方法,针对MA及SMA两种钢桥面铺装混合料,采用三轴重复加载试验评价其高温性能,并根据试验结果,通过多元线性回归得到材料的非线性计算模型参数,使用ABAQUS有限元软件,模拟三轴试验过程,将计算变形与实测变形相比较。发现两种混合料高温变形发展规律以及对不同荷载条件的响应方式不同,SMA具有优异的高温抗变形能力;有限元模拟的误差约为10%。分析结果表明:采用三轴重复加载试验和多元线性回归确定材料的非线性计算模型参数的方法可靠,模型参数可用于沥青桥面铺装的车辙变形预估。

关 键 词:路面工程  钢桥面铺装  三轴重复加载试验  有限元方法  高温性能

Deformation properties of asphalt mixtures for steel bridge deck through repeated load triaxial test
YANG Jun,ZHU Hao-ran,CUI Juan.Deformation properties of asphalt mixtures for steel bridge deck through repeated load triaxial test[J].Journal of Traffic and Transportation Engineering,2008,8(6):24-28.
Authors:YANG Jun  ZHU Hao-ran  CUI Juan
Institution:YANG Jun1,ZHU Hao-ran1,CUI Juan2
Abstract:In order to study the deformation properties of steel deck pavement under high temperature and their rutting predictions,two types of asphalt mixtures,mastic asphalt(MA) and stone mastic asphalt(SMA),were invited,and their high temperature performances were evaluated through repeated load triaxial test(RLTT). Through the multivariate linear regressive analysis of test result,the nonlinear parameters of asphalt mixtures were obtained,finite element software ABAQUS was applied to simulate the process of RLTT,and the calculalted deformation and measured deformation were compared. It is found that the natures of high temperature deformation developments for two mixtures,as well as the response manners to different load conditions,are completely different,SMA has an overwhelmingly excellent deformation resistance,and the calculation error of FEM is about 10%. The result indicates that it's reasonable to get the nonlinear parameters through multivariate linear regressive analysis from RLTT result,and it's qualified to apply these parameters to conduct the rutting prediction of asphalt pavement on steel bridge. 8 tabs,9 figs,10 refs.
Keywords:pavement engineering  steel deck pavement  repeated load triaxial test  finite element method  high temperature performance
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