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Investigation of newly developed added damping and stiffness device with low yield strength steel

机译:新开发的低屈服强度钢减振刚度装置的研究

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摘要

Energy dissipators, isolated-resistant and specific structural forms for earthquake resistance are popular topics in the research to improve shock-resistance. In this work, experimental methods were used to investigate the property of low yield strength steel. Carbon content in LYS material is lower than that in other steels; the ultimate stress is three times the yield stress. The ultimate elongation rate is about 62% and the ductility is 2-3 times that of A36 steel. In order to overcome some defects of ordinary use metallic dampers, the mechanical characteristic of low yield strength steel is used to develop added damping and stiffness for rhombic steel plate absorber. Test of the energy dissipation behavior for this newly developed device indicated that LYS could stably dissipate or absorb the input energy of earthquake. Then, the analytical model for the hysteretic behavior of this new device is proposed. Comparison of experimental data and numerical simulation results showed that this analytical model is suitable for simulating the hysteretic energy behavior of this new device.
机译:消能器,抗震隔离件和用于抗震的特殊结构形式是提高抗震性的研究热点。在这项工作中,使用实验方法来研究低屈服强度钢的性能。 LYS材料中的碳含量低于其他钢中的碳含量;极限应力是屈服应力的三倍。极限伸长率约为62%,延展性是A36钢的2-3倍。为了克服普通金属减震器的一些缺陷,低屈服强度钢的机械特性被用来开发菱形钢板减震器的附加阻尼和刚度。对这种新开发设备的能量耗散行为的测试表明,LYS可以稳定地耗散或吸收地震的输入能量。然后,提出了该新装置的磁滞行为的解析模型。实验数据与数值模拟结果的比较表明,该分析模型适合于模拟这种新器件的磁滞能量行为。

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