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Application study on mechanical property of the shape memory alloy for bridge bearings

机译:形状记忆合金在桥梁轴承力学性能中的应用研究

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Shape memory alloy (SMA) is provided with preferable damp capacity at pseudo-elasticity state, applying this property, a SMA re-centring damper is introduced by some scholars. In this paper, the new isolation system combining the above damper with laminated rubber bearing is proposed, so as to obtain preferable isolation character and re-centring capacity. To illustrate the feasibility and effectiveness of the proposed system, the following work is done: First, according the constitution model of SMA at pseudo-elasticity state the program is compiled, then the mechanical behavior of damper is simulated and the hysteretic curve is obtained. Based on the above, a linear restoring model for SMA re-centring damper is put forward. And then, the program based on the theory of story model for shear tape is compiled to conduct elasto-plastic time history analysis of practical structure examples, According to the results, the seismic response of structure is significantly reduced, and the fully re-centring capacity after earthquake is obtained by this isolation system. At last, the theory basis of SMA bridge bearings is provided for the further study and widely applied.
机译:形状记忆合金(SMA)在拟弹性状态下具有较好的阻尼能力,利用此特性,一些学者介绍了SMA重心阻尼器。本文提出了一种将上述减振器与叠层橡胶轴承相结合的新型隔振系统,以获得较好的隔振性能和对中能力。为了说明该系统的可行性和有效性,完成了以下工作:首先,根据伪弹性状态下的SMA构造模型,编制了程序,然后对阻尼器的力学性能进行了仿真,得出了滞回曲线。在此基础上,提出了SMA重心阻尼器的线性恢复模型。然后,基于剪切带的故事模型理论的程序进行编译,对实际结构实例进行弹塑性时程分析,根据结果,结构的地震响应大大降低,并完全重新定心。通过该隔离系统获得地震后的容量。最后为SMA桥梁轴承的理论基础提供了进一步的研究和广泛的应用。

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