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首页> 外文期刊>Bulletin of Earthquake Engineering >Effects of air temperature on the cyclic behavior of elastomeric seismic isolators
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Effects of air temperature on the cyclic behavior of elastomeric seismic isolators

机译:气温对弹性隔震器循环特性的影响

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摘要

The mechanical properties of elastomers can change significantly due to air temperature variations. In particular, prolonged exposure to subzero temperatures can result in rubber crystallization, with a considerable increase in the shear stiffness of the material. As a result, the seismic response of structures with elastomeric isolators can be strongly influenced by air temperature. Current seismic codes, indeed, require an upper and lower bound analysis, using suitable modification factors, to account for the changes in the cyclic behavior of elastomeric isolators due to air temperature variations. In this study, the sensitivity of the cyclic behavior of elastomeric isolators to air temperature variations is investigated based on the experimental results of an extensive test program on six different elastomeric compounds for seismic isolators, characterized by a shear modulus ranging from 0.5 to 1.2 MPa at 100% shear strain and 20°C. The cyclic tests have been performed on small-size specimens, subjected to shear strain amplitudes and frequency of loading typical for elastomeric seismic isolators, at seven different air temperatures, ranging from 40 to −20°C. The effects of rubber crystallization due to prolonged exposure to low-temperatures have been also investigated. A finite element model for the evaluation of the temperature contour map inside a full-size elastomeric isolator exposed to low air temperatures has been also developed. In the paper, the experimental outcomes are compared with the modification factors provided by the current seismic codes to account for the temperature effects on the mechanical properties of elastomeric isolators.
机译:弹性体的机械性能会因空气温度变化而显着变化。特别地,长时间暴露于零下温度会导致橡胶结晶,同时材料的剪切刚度会大大提高。结果,具有弹性隔离器的结构的地震响应会受到气温的强烈影响。实际上,当前的地震法规要求使用适当的修正因子进行上限和下限分析,以说明由于空气温度变化而导致的弹性隔离器的循环行为的变化。在这项研究中,基于针对地震隔离器的六种不同弹性体化合物的广泛测试程序的实验结果,研究了弹性体隔离器的循环行为对气温变化的敏感性,其特征在于剪切模量范围为0.5至1.2 MPa。 100%剪切应变和20°C。已在7种不同的温度范围为40至-20°C的空气温度下,对小型样本进行了循环测试,这些样本经受了剪切应变振幅和弹性地震隔离器的典型加载频率。还研究了由于长时间暴露于低温而引起的橡胶结晶的影响。还开发了用于评估暴露于低空气温度的全尺寸弹性体隔离器内部温度轮廓图的有限元模型。在本文中,将实验结果与当前地震法规提供的修正因子进行比较,以说明温度对弹性隔离器机械性能的影响。

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