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Experimental investigation on in-plane lateral stiffness and degree of ductility of composite PVC reinforced concrete walls

机译:复合PVC钢筋混凝土墙体面内侧横向刚度及延展性程度的实验研究

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This study investigates the in-plane lateral stiffness and ductility of composite PVC encased concrete walls subject to the lateral loads using pushover tests to determine lateral strength and ductility characteristics of composite PVC encased walls filled with plain concrete, macro-synthetic fiber reinforced concrete (RC), and steel RC. Eighteen concrete wall specimens were cast and subjected to pushover test to determine the load-deflection curves. Based on the capacity curves resulting from the pushover tests, the yield and maximum displacements and subsequently structural ductility and performance factors according to Australian Standard for seismic design of buildings have been determined. The determined parameters as well as the initial and effective lateral stiffness values measured from the load-deflection curves for all three cases were compared and the final findings have been discussed. Based on the outcomes of this study, it has become apparent that the tested composite PVC encased macro-synthetic fiber RC walls can exhibit superior performance in terms of ductility when compared to the unreinforced concrete specimens. In addition, the results indicated that the initial in-plane lateral stiffness values of the tested composite PVC encased macro-synthetic fiber RC walls increased by 25% compared to the tested walls filled with plain concrete. In order to enable structural designers to design composite PVC encased concrete walls, ductility factors for this type of walls have been extracted from the test results for the three mentioned cases and proposed for practical applications. It has been concluded that all the PVC encased concrete walls evaluated in this study can be categorized as fully ductile structures.
机译:本研究研究了使用推进试验的复合PVC被包装的混凝土壁的平面横向刚度和延展性,所述混凝土壁使用滑移试验确定复合PVC包装壁的横向强度和延展性特性,覆盖有普通混凝土,宏观合成纤维纤维混凝土(RC )和钢铁rc。铸造18个混凝土壁标本并进行推进试验以确定载荷偏转曲线。根据推动试验所产生的容量曲线,确定了根据澳大利亚建筑物抗震设计标准的产量和最大位移和随后的结构延展性和性能因素。比较了所确定的参数以及从所有三种情况下的载荷偏转曲线测量的初始和有效的横向刚度值,并讨论了最终结果。基于本研究的结果,显而易见的是,与未原始的混凝土样本相比,测试的复合PVC包装的宏观合成纤维RC壁可以表现出延展性的卓越性能。另外,结果表明,与填充有普通混凝土的测试壁相比,测试复合PVC的初始面内侧刚度值增加了25%。为了使结构设计师能够设计复合PVC被封装的混凝土墙,已经从测试结果中提取了这种类型的墙壁的延展因子,并提出了用于实际应用。已经得出结论,本研究中评估的所有PVC包装的混凝土墙可以作为完全延展结构进行分类。

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