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Experimental and numerical investigations on seismic behavior of steel truss reinforced concrete core walls

机译:钢桁架钢筋混凝土芯墙抗震性能的试验与数值研究

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This paper aims to investigate the seismic behavior of steel truss reinforced concrete (STRC) core walls under cyclic lateral loading. The quasi-static tests on two 1/5-scaled specimens including one steel reinforced concrete (SRC) core wall and one STRC core wall with embedded steel trusses designed according to engineering practice were conducted. The structural behavior of two specimens were compared, including the damage mode, force-displacement relationship, deformation capacity, strength and stiffness degradation, energy dissipation, and strain responses. The test results show that the embedded steel trusses affects significantly the seismic performance of the STRC core walls in terms of lateral load carrying capacity, energy dissipation and damage mode. In addition, finite element (FE) models of SRC and SPRC core walls were developed and validated. The FE models are able to predict the nonlinear responses of core walls with a reasonable level of accuracy. In consideration of the fact that in engineering practice the axial compressive load ratio of STRC core walls would be much higher than that of the specimens in the tests, the verified numerical model was further used in the study on the seismic behavior of STRC core walls with high axial compressive load ratio. The results obtained in this study could provide useful information for the engineering application of STRC core walls. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文旨在研究钢桁架钢筋混凝土(STRC)芯墙在周期性侧向荷载作用下的抗震性能。根据工程实践,对两个1/5比例的标本进行了准静态测试,其中一个标本为一个钢筋混凝土(SRC)芯壁,另一个为标有嵌入式钢桁架的STRC芯壁。比较了两个试样的结构行为,包括破坏模式,力-位移关系,变形能力,强度和刚度退化,能量耗散和应变响应。测试结果表明,嵌入式钢桁架在侧向承载能力,能量耗散和破坏模式方面对STRC核心墙的抗震性能产生了显着影响。此外,还开发并验证了SRC和SPRC核心墙的有限元(FE)模型。有限元模型能够以合理的精度预测芯壁的非线性响应。考虑到在工程实践中,STRC核心墙的轴向压缩荷载比将远远高于试样的轴向压缩荷载比,因此,在验证STRC核心墙的抗震性能时,进一步使用了验证的数值模型。高轴向压缩载荷比。本研究获得的结果可为STRC核心墙的工程应用提供有用的信息。 (C)2017 Elsevier Ltd.保留所有权利。

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