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Strain Rate Effects on Shear Modulus and Damping of Normally Consolidated Clay

机译:应变速率对正常固结土的剪切模量和阻尼的影响

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A laboratory investigation into the effects of shear strain rate on shear modulus and hysteretic damping of normally consolidated clays was carried out. The effects of shear strain rate were examined at cyclic shear strain amplitudes between 10~(-6) and 10~(-3) in undrained cyclic torsion shear tests. When the frequency of loading was changed between 0.005 and 0.1 Hz, the equivalent shear modulus was insensitive to the rate of shear straining. On the other hand, the hysteretic damping increased according to the decrease in the shear strain rate. Furthermore, for shear strains less than about 2 X 10~(-5), the maximum stiffness was hardly influenced by the shear strain rate, type of loading, number of cycles, and the cyclic prestraining; it can therefore be characterized as pseudoelastic shear modulus. On the basis of the test results, it is concluded that when applying the results of laboratory cyclic loading tests to the analysis of in situ cyclic loading problems, the effects of shear strain rate on hysteretic damping should be properly evaluated to match the frequency of loading expected in the field.
机译:对剪切应变速率对正常固结粘土的剪切模量和滞回阻尼的影响进行了室内研究。在不排水循环扭剪试验中,在10〜(-6)至10〜(-3)的循环剪切应变幅值下,研究了剪切应变率的影响。当加载频率在0.005和0.1 Hz之间变化时,等效剪切模量对剪切应变速率不敏感。另一方面,磁滞阻尼随着剪切应变率的降低而增加。此外,对于小于约2 X 10〜(-5)的剪切应变,最大刚度几乎不受剪切应变率,载荷类型,循环次数和循环预应变的影响。因此可以将其表征为伪弹性剪切模量。根据试验结果得出的结论是,将实验室循环载荷试验的结果用于现场循环载荷问题的分析时,应适当评估剪切应变率对滞后阻尼的影响,以匹配载荷频率预期在现场。

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