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A model for hysteretic behavior of rhombic low yield strength steel added damping and stiffness

机译:菱形低屈服强度钢附加阻尼和刚度的滞回模型

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摘要

The Low Yield Strength Steel (LYS) has the superiority over long period of low cycle fatigue, high strain hardening rate and impressive ductility to overcome the local fracture problem existing in regular A36 steel plate. With elastoplas-tic characteristics and experimental verification, it becomes a good material considered for added damping and stiffness (ADAS) since the stress-strain relationship of LYS performs yielding much earlier than that of A36 steel. Thus, Wen's Model and the bi-linear model, simulated for A36 energy absorber cannot properly analyze energy dissipation while A36 are replaced by LYS. Therefore, the modified Wen's Model is proposed to reproduce the complicated nonlinear strain hardening in seismic resistance of rhombic LYS under recjprocating loading test. The numerical simulation and experimental data can match each other to reveal that the proposed model has capability in predicting the hysteresis energy dissipation behavior of rhombic low yield strength steel plate. This model also can be easily integrated with a dynamic analysis program.
机译:低屈服强度钢(LYS)具有长期低循环疲劳,高应变硬化率和出色的延展性的优势,可以克服常规A36钢板存在的局部断裂问题。凭借弹性特性和实验验证,由于LYS的应力-应变关系比A36钢的屈服早得多,因此它成为考虑增加阻尼和刚度(ADAS)的良好材料。因此,当用LYS代替A36时,针对A36能量吸收器模拟的Wen模型和双线性模型无法正确分析能量耗散。因此,提出了改进的Wen模型,以再现菱形LYS在往复载荷试验下抗震性能的复杂非线性应变硬化。数值模拟和实验数据可以相互匹配,表明所提出的模型具有预测菱形低屈服强度钢板滞回耗能行为的能力。该模型还可以轻松地与动态分析程序集成。

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