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多孔混凝土基层缩缝处沥青面层应力分析
引用本文:锁利军,陈拴发,王秉纲.多孔混凝土基层缩缝处沥青面层应力分析[J].长安大学学报(自然科学版),2007,27(6):11-14.
作者姓名:锁利军  陈拴发  王秉纲
作者单位:长安大学,特殊地区公路工程教育部重点实验室,陕西,西安,710064
基金项目:国家西部交通建设科技项目
摘    要:为了研究多孔混凝土基层沥青路面的结构设计方法,通过三维有限元数值分析方法,建立多孔混凝土基层缩缝处沥青路面的三维有限元模型,分析多孔混凝土基层缩缝处沥青面层的荷载应力、温度应力、荷载与温度耦合作用下的耦合应力。结果表明:基层缩缝处沥青面层底面荷载主应力多为压应力值,但其剪应力在接缝处出现峰值;在温度作用下,沥青面层应力峰值点的位置在基层缩缝中点处沥青面层的底面及表面;荷载和温度耦合作用下基层缩缝中点处沥青面层底面的第一主应力介于荷载应力和温度应力之间。

关 键 词:道路工程  多孔混凝土基层  沥青面层  缩缝  应力
文章编号:1671-8879(2007)06-0011-04
修稿时间:2006年10月22

Stress's numerical analysis of asphalt surface in porousconcrete base's transverse contraction joint
SUO Li-jun,CHEN Shuan-fa,WANG Bing-gang.Stress''''s numerical analysis of asphalt surface in porousconcrete base''''s transverse contraction joint[J].JOurnal of Chang’an University:Natural Science Edition,2007,27(6):11-14.
Authors:SUO Li-jun  CHEN Shuan-fa  WANG Bing-gang
Abstract:3D finite element model of asphalt pavement in porous concrete base's transverse contraction joint is established by 3D finite element numerical analysis method.Meanwhile,the load stress,temperature stress and coupling stress of asphalt surface in porous concrete base's transverse contraction joint are calculated and analyzed by 3D finite element method in order to study structural design method of asphalt pavement with porous concrete base.Calculating results indicate that almost all principal stresses of asphalt surface in base's transverse contraction joint are compression stress,and maximum shearing stress appears.The points of the biggest temperature stress are located in the upper and the bottom of asphalt surface in the middle of porous concrete base's transverse contraction joint,when temperature is applied to the pavement structure.When both load and temperature are applied to the pavement structure,the first principal stress in the bottom of asphalt surface in the middle of porous concrete base's transverse contraction joint is between load stress and temperature stress.8 tabs,5 figs,10 refs.
Keywords:road engineering  porous concrete base  asphalt surface  transverse contraction joint  stress
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