Experimental study on deformation characteristics of coarse aggregates under freeze-thaw cycling conditions
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(1.State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Nanjing Hydraulic Research Institute, Nanjing 210029, China;2.Cold Region Engineering Research Institute, Heilongjiang Provincial Hydraulic Institute, Harbin 150080, China;3.Department of Geotechnical Engineering, Nanjing Hydraulic Research Institute, Nanjing 210029, China )

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TV41

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    Abstract:

    Based on the large-scale triaxial compression test and creep test of coarse aggregates under freezing and thawing environment, the deformation and creep characteristics of coarse aggregates under different freezing-thawing cycles, confining pressures and stress levels are studied. The test results show that the stress-strain relationship of unfrozen coarse-grained materials is a strain hardening curve, and the coarse-grained materials show dilatancy in the shear process within the confining pressure range of 100-600.kPa. Under the influence of freeze-thaw cycle, the initial elastic modulus and failure stress both show a downward trend. When the confining pressure is 200.kPa, the initial elastic modulus decreases by 20% and the failure stress decreases by 37%. When the confining pressure is 600.kPa, the initial elastic modulus decreases by 5% and the failure stress decreases by 25%. The deformation of coarse-grained materials under freeze-thaw cycles develops into a decay-type creep with time. Meanwhile, the axial creep strain gradually increases with the increase of the number of freeze-thaw cycles and the stress level. The axial creep strain obviously increases after 8 freeze-thaw cycles and the creep time curve of coarse aggregates under the influence of stress level can be expressed in the form of exponential function.

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苏安双,王宇,石北啸,等.冻融循环条件下粗粒料变形特性试验研究[J].河海大学学报(自然科学版),2023,51(6):61-66.(SU Anshuang, WANG Yu, SHI Beixiao, et al. Experimental study on deformation characteristics of coarse aggregates under freeze-thaw cycling conditions[J]. Journal of Hohai University (Natural Sciences),2023,51(6):61-66.(in Chinese))

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  • Received:August 20,2022
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  • Online: December 17,2023
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