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Creep Prediction of Chemical Grouted Sands  

Kang, Hee-Bog (한영대학 토목환경과)
Kim, Jong-Ryeol (전남대 토목공학과)
Kang, Kwon-Soo (서남대 토목공학과)
Kim, Tae-Hoon (전남대 토목공학과)
Hwang, Soung-Won (전남대 토목공학과)
Publication Information
Journal of the Korea institute for structural maintenance and inspection / v.8, no.2, 2004 , pp. 195-204 More about this Journal
Abstract
A series of constant creep and repeated creep tests are performed to investigate the behavior of visco-elasto-plastic materials of chemical grouted sands. In the result of constant creep test, the material exhibits three types of shear strain : elastic, plastic, viscoelastic. The elastic, plastic and viscoelastic strains are linear, i.e., the strains are proportional to the stresses for loading. Good agreement is found between the predicted viscoelastic and test results by the power law and the generalized model. In the repeated creep test, the instantaneous recoverable strain is time-independent and the magnitude of accumulated plastic strain increases with number of cycles. Also it is seen that the accumulated plastic strains are approximately proportional to stress. There are no significant differences between test results predicted values for first cycle, and the differences increase relatively insignificantly with number of cycles.
Keywords
Creep; Creep Compliance; Viscoelastic Strain; Generalized;
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