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混凝土桥面轨道纵向位移阻力的研究
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作者 杨梦蛟 《中国铁道科学》 EI CAS CSCD 北大核心 2001年第6期91-94,共4页
对桥上无缝线路 ,梁轨之间存在由相对位移引起的轨道纵向位移阻力 ,使桥梁与轨道形成一个相互作用、相互约束的力学平衡体系 ,因此 ,轨道纵向位移阻力是分析无缝线路钢轨和桥梁受力的重要参数。由于道床的散粒体特性以及现场测试条件的... 对桥上无缝线路 ,梁轨之间存在由相对位移引起的轨道纵向位移阻力 ,使桥梁与轨道形成一个相互作用、相互约束的力学平衡体系 ,因此 ,轨道纵向位移阻力是分析无缝线路钢轨和桥梁受力的重要参数。由于道床的散粒体特性以及现场测试条件的限制 ,国内外在这方面的试验研究较少。轨道纵向位移阻力与梁轨相对位移和轨道竖向受载的关系 ,可采用梁体与钢轨之间产生一系列的相对位移、并测定钢轨的受力大小来确定。本文通过室内模拟试验 ,介绍了轨道纵向位移阻力的试验分析结果。轨道纵向位移阻力是分析无缝线路钢轨和桥梁受力的重要参数。本文通过两个 1∶4缩尺室内模拟结构试验 。 展开更多
关键词 桥梁 无缝线路 混凝土桥面 轨道 纵向位移阻力 相互作用 室内模拟试验
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Longitudinal resistance performance of granular ballast beds under cyclic symmetric displacement loading
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作者 Jie-ling XIAO Hao LIU +3 位作者 Jing-mang XU Ping WANG Gan-zhong LIU Rong CHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2017年第8期648-659,共12页
The longitudinal resistance performance of a granular ballast bed under cyclic symmetric displacement loading was studied based on a full-scale test model of ballast track structures. The change law of the longitudina... The longitudinal resistance performance of a granular ballast bed under cyclic symmetric displacement loading was studied based on a full-scale test model of ballast track structures. The change law of the longitudinal resistance characteristics of the ballast bed under variable displacement amplitudes was analyzed. The results show that: the resistance-displacement curves of a granular ballast bed are a set of closed hysteretic curves, indicating obvious energy consumption; a granular ballast bed softens gradually during the cyclic process with constant displacement amplitude, and the residual deformation rate increases nonlinearly with increasing cycle number; the peak value of the longitudinal resistance of lines decreases with increasing cycle number; the cyclic softening of a granular ballast bed is dependent on the displacement amplitude-the higher the displacement, the more severe the cyclic softening will become; after cyclic displacement loading is applied several times, the longitudinal resistance of the bed will degenerate obviously, and the higher the displacement amplitude, the higher the longitudinal resistance attenuation rate of the ballast bed will become. 展开更多
关键词 Granular ballast bed Displacement amplitude Cyclic loading Longitudinal resistance
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