卢震, 陈开圣. Experimental Study on Dynamic Shear Modulus and Damping Ratio of Rubber-clay Mixture[J]. 2019, 39(2): 250-257. DOI: 10.13409/j.cnki.jdpme.2019.02.008.
Experimental Study on Dynamic Shear Modulus and Damping Ratio of Rubber-clay Mixture
To illustrate the dynamic characteristics of rubber-clay mixture
laboratory dynamic triaxial tests under 4 different confining pressures were conducted on the rubber-clay mixtures with 5 different rubber contents.The effects of rubber content and confining pressure on shear modulus and damping ratio of rubber-clay mixture were studied.The results show that under the same confining pressure
the dynamic shear modulus of the mixtures is much lower than that of the pure clay.The dynamic shear modulus decreases with the increase of rubber content
and reducing rate gradually slows down.The nonlinear relationship between dynamic shear modulus and dynamic strain fades gradually.The damping ratio increases gradually with the increases of rubber content
and has a remarkable improvement compared with that of pure clay.With same rubber content
the dynamic shear modulus increases and the damping ratio decreases with the increase of confining pressure
and the linear behavior between dynamic shear modulus and dynamic strain strengthens.The relationship between dynamic shear modulus and dynamic strain can be expressed by H-D model.The relationship between maximum dynamic shear modulus and confining pressure can be expressed by a linear function.The relation between damping ratio and dynamic strain can be expressed by the modified Chen Guo-xing model.Test results confirm that earthquake resistant performance of rubber-clay mixture is good.
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