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混凝土框架结构典型震害分析 被引量:2
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作者 刘殿忠 王贺 王法宇 《吉林建筑大学学报》 CAS 2015年第2期5-8,共4页
在对近几年国内外地震中房屋震害调查发现,"强梁弱柱"是造成多数建筑物局部破坏乃至整体倒塌的主要破坏机制,这违背了抗震规范要求的"强柱弱梁"设计初衷.形成这种破坏机制的原因是多方面的,本文通过对已有资料的总... 在对近几年国内外地震中房屋震害调查发现,"强梁弱柱"是造成多数建筑物局部破坏乃至整体倒塌的主要破坏机制,这违背了抗震规范要求的"强柱弱梁"设计初衷.形成这种破坏机制的原因是多方面的,本文通过对已有资料的总结,分析了不同因素对混凝土框架结构发生"强柱弱梁"破坏现象的影响. 展开更多
关键词 破坏机制 “强梁弱柱” 混凝土框架结构
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现浇楼板对钢筋混凝土框架结构抗震性能的影响
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作者 郭靳时 陈辰 《吉林建筑大学学报》 CAS 2015年第2期9-11,共3页
本文通过PKPM结构计算软件建模并求得配筋,通过改变楼板厚度来分析在梁的每侧不同板翼缘宽度的情况下现浇楼板对于梁端承载力和柱端承载力的影响,进而分析是否会发生"强梁弱柱"这种破坏机制.结果表明,边节点和中节点的梁端承... 本文通过PKPM结构计算软件建模并求得配筋,通过改变楼板厚度来分析在梁的每侧不同板翼缘宽度的情况下现浇楼板对于梁端承载力和柱端承载力的影响,进而分析是否会发生"强梁弱柱"这种破坏机制.结果表明,边节点和中节点的梁端承载力会随着梁的每侧板翼缘宽度的增加而增加,并且随着现浇楼板厚度的增大,梁端承载力增加的幅度也会增大.但是,由于边节点柱是构造配筋,柱的承载力会提高很多,所以不会发生"强梁弱柱"这种破坏机制,而中节点在考虑现浇楼板对梁端承载力影响的情况下则会发生"强梁弱柱"这种破坏机制. 展开更多
关键词 现浇楼板 梁端承载力 端承载力 “强梁弱柱”
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Realization of the global yield mechanism of RC frame structures by redesigning the columns using column tree method 被引量:2
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作者 BAI JiuLin OU JinPing 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第10期1627-1637,共11页
Global failure mechanism, i.e., the strong-column weak-beam mechanism, can provide higher total energy dissipation capacity with less ductility demand on components than other failure modes, and results in a more unif... Global failure mechanism, i.e., the strong-column weak-beam mechanism, can provide higher total energy dissipation capacity with less ductility demand on components than other failure modes, and results in a more uniform story drift distribution and higher resistance to earthquake loads at the system level. However, the current code-based elastic design method cannot guarantee the global failure mechanism of frame structures under severe earthquakes. In this paper, a simple, but practical design procedure is proposed to ensure the global failure mechanism of reinforced concrete(RC) frame structures by redesigning the columns using the column tree method(CTM). CTM considers the yield limit state of all beams and column bases. The code-based design is firstly carried out to determine the section information of all beams and base columns. Then, the internal force demands applied on the column tree can be derived. Lastly, the column moments, shear forces and axial forces are determined according to the free-body diagram of CTM to finish the column redesign. Two RC frame structures with 6 and 12 stories are illustrated to verify the design procedure. The analytical results demonstrate the proposed approach can realize the global failure mechanism. 展开更多
关键词 global failure mechanism column tree method (CTM) reinforced concrete frame structures failure mode plastic hinges
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