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基于构件损伤的防屈曲支撑钢框架易损性分析 被引量:7
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作者 徐强 马艳 王社良 《四川大学学报(工程科学版)》 EI CAS CSCD 北大核心 2015年第4期61-68,共8页
为研究防屈曲支撑钢框架在地震作用下的结构损伤程度,首先建立框架柱、框架梁与防屈曲支撑各构件的损伤模型,通过加权系数法合理地考虑各构件的权重系数与重要性系数,建立楼层损伤模型,考虑楼层权重系数,最终建立了能够反映构件损伤、... 为研究防屈曲支撑钢框架在地震作用下的结构损伤程度,首先建立框架柱、框架梁与防屈曲支撑各构件的损伤模型,通过加权系数法合理地考虑各构件的权重系数与重要性系数,建立楼层损伤模型,考虑楼层权重系数,最终建立了能够反映构件损伤、楼层损伤及整体结构损伤的防屈曲支撑钢框架结构地震损伤模型,并给出了防屈曲支撑钢框架的损伤状态及相应的损伤指数范围;同时考虑地震动不确定性与结构不确定性对防屈曲支撑钢框架进行IDA分析,对比不考虑结构不确定性与考虑结构不确定性时结构不同损伤程度的易损性曲线;最后对比了采用以结构最大层间位移角与所建立的结构损伤指标为评价指标时结构的易损性曲线。结果表明:在非倒塌状态下,二者区别不大;在倒塌状态下,考虑结构不确定性时对数标准差明显增大。 展开更多
关键词 防屈曲支撑钢框架 构件损伤模型 整体损伤模型 易损性分析 结构不确定性
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Mechanical and damage evolution properties of sandstone under triaxial compression 被引量:15
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作者 Zong Yijiang Han Lijun +1 位作者 Wei Jianjun Wen Shengyong 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第4期601-607,共7页
To study the mechanical and damage evolution properties of sandstone under triaxial compression, we analyzed the stress strain curve characteristics, deformation and strength properties, and failure process and charac... To study the mechanical and damage evolution properties of sandstone under triaxial compression, we analyzed the stress strain curve characteristics, deformation and strength properties, and failure process and characteristics of sandstone samples under different stress states. The experimental results reveal that peak strength, residual strength, elasticity modulus and deformation modulus increase linearly with confining pressure, and failure models transform from fragile failure under low confining pressure to ductility failure under high confining pressure. Macroscopic failure forms of samples under uniaxial compression were split failure parallel to the axis of samples, while macroscopic failure forms under uniaxial compression were shear failure, the shear failure angle of which decreased linearly with confin- ing pressure. There were significant volume dilatation properties in the loading process of sandstone under different confining pressures, and we analyzed the damage evolution properties of samples based on acoustic emission damage and volumetric dilatation damage, and established damage constitutive model, realizing the real-time Quantitative evaluation of samnles damage state in loading process. 展开更多
关键词 Rock mechanics Mechanical properties Dilatation Damage evolution Failure characteristics
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