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Design and testing of a lead damper for seismic applications

机译:地震应用铅阻尼器的设计和测试

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摘要

The main objective of the research was the development of efficient, low-cost, and reliable structural dampers, suitable for use in structures subjected to wind, seismic, and other dynamic excitations. Different from similar dampers described in the literature, the energy dissipation device proposed herein works by plastic shear deformation of a set of lead rings. On account of its almost perfectly rigid-plastic behaviour, with little rate dependence, the device proved in laboratory tests to be able to absorb a large amount of energy during 10{sup}3 cycles with no sign of shakedown. This article presents the basic design of the damper and the experimental determination of its mechanical characteristics by means of a set of cyclic tests, for frequencies ranging between 0.1 and 3 Hz and displacement amplitudes ranging from 1 to 12 mm. A simplified design procedure is proposed and verified by a numerical analysis using a finite-element model.
机译:该研究的主要目的是开发一种高效,低成本和可靠的结构阻尼器,适用于遭受风,地震和其他动力激励的结构。与文献中描述的类似阻尼器不同,本文提出的能量耗散装置通过一组导环的塑性剪切变形来工作。由于其几乎完美的刚塑性行为,几乎没有速率依赖性,因此该设备在实验室测试中证明能够在10 {sup} 3个周期内吸收大量能量,而不会出现震动迹象。本文介绍了阻尼器的基本设计,并通过一组循环测试对阻尼器的机械特性进行了实验性确定,这些阻尼器的频率范围为0.1到3 Hz,位移幅度为1到12 mm。提出了一种简化的设计程序,并通过使用有限元模型的数值分析进行了验证。

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