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Axial Hysteretic Modeling of Cold-Formed Steel Members for Computationally Efficient Seismic Simulation

机译:冷成型钢构件轴向滞回模型,用于计算高效地震仿真

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Analysis and design of cold-formed steel (CFS) structures subjected to seismic forces usually focuses on the behavior of systems such as strapped/sheathed shear walls. Experimental data from tests on these systems offers limited information concerning the seismic performance of the individual CFS components or other configurations of shear walls. Buckling and cross-sectional deformations (unique to thin-walled steel sections) highly influence the response under cyclic loading of CFS members and the associated systems. Therefore, accurate and computationally efficient hysteretic models are required to predict the seismic performance of individual CFS components and CFS buildings. Experimental data from twenty-four axial tests is utilized to calibrate a hysteretic model that represents the axial cyclic response of cold-formed steel C-section structural framing members. The model includes strength degradation, unloading stiffness degradation and pinching behavior of the observed experimental response. Model parameters and damage rules are calibrated for local, distortional and global buckling based on the hysteretic energy dissipated. The calibrated parameters can be utilized to develop a toolbox of nonlinear hysteretic springs to represent framing axial members in CFS structures for seismic analysis and facilitate performance based earthquake engineering of CFS structures.
机译:经受抗震力的冷成型钢(CFS)结构的分析和设计通常侧重于斑块/护套剪力墙等系统的行为。从在这些系统提供关于各个CFS组件或剪力墙的其他结构的抗震性能的限制信息的测试的实验数据。屈曲和横截面变形(薄壁钢部分独特)高度影响CFS成员和相关系统的循环负载下的响应。因此,需要准确和计算有效的滞后模型来预测各个CFS组件和CFS建筑物的地震性能。来自二十四个轴向试验的实验数据用于校准滞后模型,该模型表示冷成型钢C型结构框架构件的轴向循环响应。该模型包括强度降解,卸载刚度降解和观察到的实验反应的夹持行为。基于滞后能量耗散的局部,扭曲和全球屈曲校准模型参数和损坏规则。校准参数可以被利用来开发迟滞非线性弹簧的工具箱来表示CFS结构成帧轴向构件用于地震分析和促进CFS结构的性能,基于地震工程。

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