Seismic Behavior of Connections Subjected to Punching Shear in Flat-Slab Systems

S. Setia, S. Kalyani
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引用次数: 3

Abstract

Flat-slab structural systems have a large applicability due to their functional and economic advantages. Initially, the reinforced concrete flat slabs had drops and columns with capitals and were considered to be the structures of choice for warehouse construction and heavy loads because shear was not a problem. Flat plates were subsequently developed, with no drops and no column capitals and due to cheaper formwork required, they were popular for residential and office buildings. Flat plate slabs exhibit higher stress at the column connection and are most likely to fail due to punching shear rather than flexural failure. To avoid shear failure, parameters influencing the punching strength need to be clearly investigated by realistic analytical or experimental studies. The present analytical study investigates the influence of some of the parameters governing the behavior of connections under punching shear, which are concrete strength, column aspect ratio, slab thickness and gravity loading. Computer program Structural Analysis Program 2000 V14 is used to model columns and slabs as frame and shell elements, respectively. Parametric studies on aspect ratio and depth-to-span ratio have been carried out using displacement control non-linear static pushover analysis to investigate the influence of these parameters on punching shear capacity of the intermediate and corner column connections, which proved to be the governing criteria to prescribe drift limits for flat plate systems in seismic zones.
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平板系统受冲剪连接的抗震性能
平板结构体系由于其功能性和经济性的优势,具有很大的适用性。最初,钢筋混凝土平板有柱头和柱头,被认为是仓库建设和重载的首选结构,因为剪切不是问题。平板随后被开发出来,没有下降和圆柱,由于需要更便宜的模板,它们在住宅和办公楼中很受欢迎。平板板在柱连接处表现出更高的应力,并且最可能由于冲剪而不是弯曲破坏而破坏。为了避免剪切破坏,需要通过现实的分析或实验研究清楚地研究影响冲孔强度的参数。本分析研究探讨了混凝土强度、柱长径比、板厚和重力荷载等控制节点在冲剪作用下性能的一些参数的影响。利用计算机程序结构分析程序2000 V14对柱和板分别作为框架单元和壳单元进行建模。采用位移控制非线性静力推覆分析方法,对纵横比和深跨比进行了参数化研究,探讨了这些参数对中间柱和角柱连接冲剪承载力的影响,证明了这些参数是规定地震带平板系统位移极限的控制准则。
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33
审稿时长
16 weeks
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