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不同累积概率不平顺状态下轨道板离缝损伤研究 被引量:2
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作者 陈宪麦 王日吉 +3 位作者 徐磊 潘燕萍 彭良坤 李忠 《铁道科学与工程学报》 EI CAS CSCD 北大核心 2023年第5期1666-1676,共11页
为明晰线弹性模型与非线性损伤塑性模型在无砟轨道不同状态下的适用范围,研究层间离缝纵向扩展过程中轨道板在列车动荷载作用下的损伤萌生扩展规律,基于ABAQUS有限元软件建立CRTSⅠ型板式无砟轨道空间实体模型,以不同累积概率不平顺状... 为明晰线弹性模型与非线性损伤塑性模型在无砟轨道不同状态下的适用范围,研究层间离缝纵向扩展过程中轨道板在列车动荷载作用下的损伤萌生扩展规律,基于ABAQUS有限元软件建立CRTSⅠ型板式无砟轨道空间实体模型,以不同累积概率不平顺状态下的扣件支点压力作为荷载激励,分别采用线弹性模型与非线性损伤塑性模型描述轨道板混凝土应力-应变关系,对比分析整体轨道板在2种本构模型下的受力状态,分析其在轨道板-CA砂浆层层间离缝状态下的动力损伤规律。研究结果表明:在轨道结构正常状态下,各累积概率不平顺状态下的轨道板纵、横向拉应力水平较低,可采用线弹性模型简化计算;层间离缝状态下,轨道板上表面将承受较大拉应力而使轨道板受力进入塑性软化阶段,此时可采用非线性损伤塑性模型描述轨道板损伤的萌生、扩展过程。10%~90%累积概率不平顺状态下,轨道板损伤萌生所需离缝纵向长度处于820~890 mm之间,99%累积概率下仅需580 mm。轨道板损伤首先产生于第2组承轨台周围的轨下对应区域,随离缝纵向发展同时向板中与板边扩展直至贯通;轨道不平顺状态越差,轨道板损伤萌生与达到最大拉伸损伤所需离缝纵向长度越小。损伤所产生的塑性应变将引起轨道板几何状态的改变,进一步恶化轨道不平顺状态,造成轨道板损伤-轨道不平顺加剧的恶性循环。 展开更多
关键词 CRTSⅠ型式无砟轨道 层间离缝 混凝土损伤塑性模型 轨道不平顺概率模型 轨道板损伤
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Damage evolution and dynamic response of cement asphalt mortar layer of slab track under vehicle dynamic load 被引量:21
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作者 ZHU ShengYang FU Qiang +1 位作者 CAI ChengBiao SPANOS Pol D 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第10期1883-1894,共12页
The damage evolution and dynamic performance of a cement asphalt(CA)mortar layer of slab track subjected to vehicle dynamic load is investigated in this paper.Initially,a statistical damage constitutive model for the ... The damage evolution and dynamic performance of a cement asphalt(CA)mortar layer of slab track subjected to vehicle dynamic load is investigated in this paper.Initially,a statistical damage constitutive model for the CA mortar layer is developed using continuous damage mechanics and probability theory.In this model,the strength of the CA mortar elements is treated as a random variable,which follows the Weibull distribution.The inclusion of strain rate dependence affords considering its influence on the damage development and the transition between viscosity and elasticity.Comparisons with experimental data support the reliability of the model.A three-dimensional finite element(FE)model of a slab track is then created with the commercial software ABAQUS,where the devised model for the CA mortar is implemented as a user-defined material subroutine.Finally,a vertical vehicle model is coupled with the FE model of the slab track,through the wheel-rail contact forces,based on the nonlinear Hertzian contact theory.The evolution of the damage and of the dynamic performance of the CA mortar layer with various initial damage is investigated under the train and track interaction.The analysis indicates that the proposed model is capable of predicting the damage evolution of the CA mortar layer exposed to vehicle dynamic load.The dynamic compressive strain,the strain rate,and the induced damage increase significantly with an increase in the initial damage,whereas the dynamic compressive stress exhibits a sharp decrease with the increasing initial damage.Also,it is found that the strain rate dependence significantly influences the damage evolution and the dynamic behavior of the CA mortar layer. 展开更多
关键词 cement asphalt mortar slab track statistical damage constitutive model vehicle-track coupled dynamics damage evolution
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