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Study on seismic retrofit of structures using SPSW systems and LYP steel material

机译:使用SPSW系统和LYP钢材进行结构抗震改造的研究

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Steel plate shear walls (SPSWs) have been shown to be efficient lateral force-resisting systems, which are increasingly used in new and retrofit construction. These structural systems are designed with either stiffened and stocky or unstiffened and slender web plates based on disparate structural and economical considerations. Based on some limited reported studies, on the other hand, employment of low yield point (LYP) steel infill plates with extremely low yield strength, and high ductility as well as elongation properties is found to facilitate the design and improve the structural behavior and seismic performance of the SPSW systems. On this basis, this paper reports system-level investigations on the seismic response assessment of multi-story SPSW frames under the action of earthquake ground motions. The effectiveness of the strip model in representing the behaviors of SPSWs with different buckling and yielding properties is primarily verified. Subsequently, the structural and seismic performances of several code-designed and retrofitted SPSW frames with conventional and LYP steel infill plates are investigated through detailed modal and nonlinear time-history analyses. Evaluation of various seismic response parameters including drift, acceleration, base shear and moment, column axial load, and web-plate ductility demands, demonstrates the capabilities of SPSW systems in improving the seismic performance of structures and reveals various advantages of use of LYP steel material in seismic design and retrofit of SPSW systems, in particular, application of LYP steel infill plates of double thickness in seismic retrofit of conventional steel and code-designed SPSW frames.
机译:钢板剪力墙(SPSW)已被证明是有效的侧向抗力系统,越来越多地用于新建和翻新建筑中。这些结构系统是基于不同的结构和经济考虑而设计的,既有刚硬的或矮胖的腹板,也有非刚硬的和细长的腹板。另一方面,基于一些有限的研究,发现使用具有极低屈服强度,高延展性和伸长率特性的低屈服点(LYP)钢填充板可以简化设计并改善结构性能和抗震性能SPSW系统的性能。在此基础上,本文报告了在地震地震动的作用下多层SPSW框架地震响应评估的系统级研究。首先验证了带状模型在表示具有不同屈曲和屈服特性的SPSW行为方面的有效性。随后,通过详细的模态和非线性时程分析,研究了几种采用常规和LYP钢板填充的规范设计和改造的SPSW框架的结构和抗震性能。评估各种地震响应参数,包括漂移,加速度,基础剪力和弯矩,立柱轴向载荷以及腹板延性要求,证明了SPSW系统改善结构抗震性能的能力,并揭示了使用LYP钢材的各种优势在SPSW系统的抗震设计和改造中,特别是在传统钢和规范设计的SPSW框架的抗震改造中,应用了厚度两倍的LYP钢板填充板的应用。

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