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Viscoelastic deformation behavior of cement and emulsified asphalt mortar in China railway track system I prefabricated slab track 被引量:6
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作者 Juan-juan REN Hao-lan LI +3 位作者 Xiao-pei CAI Shi-jie DENG Ji WANG Wei DU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第4期304-316,共13页
Under repeated train-induced loads, cement and emulsified asphalt mortar(CA mortar) as a viscoelastic material has a time-dependent deformation, part of which is irreversible. This could lead to debonding between the ... Under repeated train-induced loads, cement and emulsified asphalt mortar(CA mortar) as a viscoelastic material has a time-dependent deformation, part of which is irreversible. This could lead to debonding between the mortar layer and the track slab. Based on the theory of viscoelasticity and the analytical method of the time hardening law(THL), the viscoelastic deformation behavior of CA mortar was studied. Using ABAQUS, we established a solid model of China railway track system(CRTS) Ⅰ prefabricated slab track, with CA mortar at different initial Young’s moduli under cyclic loading corresponding to the influence of actual train loads. The results reveal that the fitted parameters of the THL for CA mortar are suitable for describing its viscoelastic deformation. As the initial Young’s modulus increases, the strain difference before and after cyclic loading gradually decreases, and the displacement difference increases from 0.2 mm to 0.6 mm. The deformation mainly occurs at the end of a mortar layer with longitudinal distribution of about 2.5 times the fasteners’ spacing. It follows that the viscoelastic performance of CA mortar is one of the most important reasons that cause debonding underneath the track slab. Therefore, we suggest that the adverse effects of viscoelastic behavior of CA mortar should be considered when researching such deformation and damage. 展开更多
关键词 China railway track system(CRTS) prefabricated slab track Cement and emulsified asphalt mortar(CA mortar) Initial Young’s modulus Viscoelastic deformation Time hardening law(THL)
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板式无砟轨道CA砂浆黏弹性特征 被引量:6
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作者 任娟娟 李浩蓝 +3 位作者 杜威 邓世杰 田根源 巫江 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2019年第3期743-751,共9页
为研究砂浆在列车荷载作用下、不同初始弹性模量时的黏弹性变形规律,以黏弹性理论与时间硬化率分析方法为基础,拟合得到砂浆的时间硬化率特征参数,通过ABAQUS建立基于时间硬化率的CRTS I型板式无砟轨道实体模型。研究结果表明:基于时间... 为研究砂浆在列车荷载作用下、不同初始弹性模量时的黏弹性变形规律,以黏弹性理论与时间硬化率分析方法为基础,拟合得到砂浆的时间硬化率特征参数,通过ABAQUS建立基于时间硬化率的CRTS I型板式无砟轨道实体模型。研究结果表明:基于时间硬化率的分析模型能很好地模拟砂浆变形行为,拟合得到的特征参数较为合理;若砂浆初始弹性模量增大,则砂浆在黏弹性变形前、后应变差值逐渐减小,位移差值逐渐增大,位移差值集中于0.2~0.6 mm,变形敏感部位约在板端2.5个扣件间距处。砂浆本身黏弹性特征引起的不可恢复变形是导致砂浆与轨道板层间离缝的重要原因之一。 展开更多
关键词 板式无砟轨道 CA砂浆 黏弹性 时间硬化
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