To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted ...To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted on two test walls. The test results confirm the feasibility of the novel joints as well as the favorable seismic performance of the walls, even though certain optimization measures should be taken to improve the ductility. The load-transferring mechanism subsequently is theoretically investigated based on the experimental study. The theoretical results show the load-transferring route of the novel joints is concise and definite. During the elastic stage, the vertical shear stress in the connecting steel frame(CSF) distributes uniformly; and each high-strength bolt(HSB)primarily delivers vertical shear force. However, the stress in the CSF redistributes when the walls develop into the elastic-plastic stage. At the ultimate state, the vertical shear stress and horizontal normal stress in the CSF distribute linearly; and the HSBs at both ends of the CSF transfer the maximum shear forces.展开更多
提出一种新型预应力钢筋混凝土叠合剪力墙,通过在预制板内布置水平预应力钢筋,降低板厚,方便运输和吊装。对剪跨比为1.5的现浇剪力墙和预应力叠合剪力墙进行了低周往复加载试验,对比分析了其破坏模式、承载力、延性和耗能能力,结果表明...提出一种新型预应力钢筋混凝土叠合剪力墙,通过在预制板内布置水平预应力钢筋,降低板厚,方便运输和吊装。对剪跨比为1.5的现浇剪力墙和预应力叠合剪力墙进行了低周往复加载试验,对比分析了其破坏模式、承载力、延性和耗能能力,结果表明叠合剪力墙与现浇剪力墙的抗震性能一致。采用有限元分析软件ABAQUS建立了剪力墙的非线性数值分析模型,基于试验结果验证了模型的正确性,并进行了轴压比、剪跨比、初始预应力等参数分析。结果表明,高轴压比及小剪跨比下叠合剪力墙的承载力及延性优于现浇剪力墙。随着初始预应力的增大,承载力提高,试件由剪切破坏转换为弯曲破坏。水平预应力筋延缓了叠合剪力墙斜向裂缝的发展,提高了抗剪承载力,改变了剪力墙的破坏模式,建议张拉控制应力取值为0.50 f ptk。展开更多
基金Project(51078077)supported by the National Natural Science Foundation of China
文摘To study the seismic performance and load-transferring mechanism of an innovative precast shear wall(IPSW) involving vertical joints, an experimental investigation and theoretical analysis were successively conducted on two test walls. The test results confirm the feasibility of the novel joints as well as the favorable seismic performance of the walls, even though certain optimization measures should be taken to improve the ductility. The load-transferring mechanism subsequently is theoretically investigated based on the experimental study. The theoretical results show the load-transferring route of the novel joints is concise and definite. During the elastic stage, the vertical shear stress in the connecting steel frame(CSF) distributes uniformly; and each high-strength bolt(HSB)primarily delivers vertical shear force. However, the stress in the CSF redistributes when the walls develop into the elastic-plastic stage. At the ultimate state, the vertical shear stress and horizontal normal stress in the CSF distribute linearly; and the HSBs at both ends of the CSF transfer the maximum shear forces.
文摘提出一种新型预应力钢筋混凝土叠合剪力墙,通过在预制板内布置水平预应力钢筋,降低板厚,方便运输和吊装。对剪跨比为1.5的现浇剪力墙和预应力叠合剪力墙进行了低周往复加载试验,对比分析了其破坏模式、承载力、延性和耗能能力,结果表明叠合剪力墙与现浇剪力墙的抗震性能一致。采用有限元分析软件ABAQUS建立了剪力墙的非线性数值分析模型,基于试验结果验证了模型的正确性,并进行了轴压比、剪跨比、初始预应力等参数分析。结果表明,高轴压比及小剪跨比下叠合剪力墙的承载力及延性优于现浇剪力墙。随着初始预应力的增大,承载力提高,试件由剪切破坏转换为弯曲破坏。水平预应力筋延缓了叠合剪力墙斜向裂缝的发展,提高了抗剪承载力,改变了剪力墙的破坏模式,建议张拉控制应力取值为0.50 f ptk。