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正负环境温度下橡胶增强膨胀土(ESR)的动力特性

Dynamic Characteristics of Rubber Reinforced Expansive Soil (ESR) at Positive and Negative Ambient Temperatures.

作者信息

Lv Jianhang, Yang Zhongnian, Shi Wei, Lu Zhaochi, Zhang Qi, Ling Xianzhang

机构信息

School of Civil Engineering, Qingdao University of Technology, Qingdao 266033, China.

School of Civil Engineering, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Polymers (Basel). 2022 Sep 23;14(19):3985. doi: 10.3390/polym14193985.

Abstract

Using tire waste rubber reinforced expansive soil (ESR) can modify its poor engineering characteristics. The damping properties of ESR at different temperatures may vary dramatically. Two kinds of rubber R (large particle size) and R (small particle size) are mixed with expansive soil according to gradient ratio. The backbone curves, dynamic shear modulus, and damping ratio of expansive soil in varying temperature fields of 20 °C, -5 °C, and -15 °C are investigated. The Hardin-Drnevich model can well fit the backbone curves of ESR specimens in various temperature fields. Dynamic triaxial results show that 5-10% R rubber can withstand higher shear stress in all temperature fields; R rubber can increase the dynamic shear modulus of expansive soil and reach the peak value with 10% rubber content. The damping ratio can be significantly improved by using 10% R rubber at room temperature, while the ESR damping ratio in a temperature field of -5 °C does not change significantly with increasing shear strain or even decreases; R increases the damping ratio of expansive soils in the temperature field of 15 °C while small particle size R decreases the damping ratio of expansive soils. The experimental results validate the effectiveness of ESR in the frozen soil area. In an engineering sense, local temperature needs to be considered to use an appropriate ESR, which can provide effective seismic isolation and damping.

摘要

使用废旧轮胎橡胶增强膨胀土(ESR)可以改善其不良工程特性。ESR在不同温度下的阻尼特性可能会有显著差异。将两种橡胶R(大粒径)和R(小粒径)按梯度比例与膨胀土混合。研究了膨胀土在20℃、-5℃和-15℃不同温度场下的骨架曲线、动剪切模量和阻尼比。Hardin-Drnevich模型能够很好地拟合ESR试样在不同温度场下的骨架曲线。动三轴试验结果表明,5%-10%的R橡胶在所有温度场下都能承受更高的剪应力;R橡胶能提高膨胀土的动剪切模量,并在橡胶含量为10%时达到峰值。在室温下使用10%的R橡胶可显著提高阻尼比,而在-5℃温度场下,ESR的阻尼比随剪应变增加变化不明显甚至减小;R在-15℃温度场下提高了膨胀土的阻尼比,而小粒径的R降低了膨胀土的阻尼比。试验结果验证了ESR在冻土地区的有效性。从工程意义上讲,在使用合适的ESR时需要考虑当地温度,其可以提供有效的隔震和阻尼作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc8c/9572100/a29135137816/polymers-14-03985-g001.jpg

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