Journal of Shanghai Jiao Tong University (Science) ›› 2019, Vol. 24 ›› Issue (2): 196-203.doi: 10.1007/s12204-019-2050-1

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Elastoplastic Model for Soils Considering Structure and Overconsolidation

ZHANG Shuo (张硕), LIAO Chencong* (廖晨聪), ZHANG Qi (张琪), ZHEN Liang (甄亮)   

  1. (1. Department of Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China; 2. Shanghai Road and Bridge (Group) Co., Ltd., Shanghai 200433, China)
  • 出版日期:2019-04-30 发布日期:2019-04-01
  • 通讯作者: LIAO Chencong* (廖晨聪) E-mail:billaday@sjtu.edu.cn

Elastoplastic Model for Soils Considering Structure and Overconsolidation

ZHANG Shuo (张硕), LIAO Chencong* (廖晨聪), ZHANG Qi (张琪), ZHEN Liang (甄亮)   

  1. (1. Department of Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China; 2. Shanghai Road and Bridge (Group) Co., Ltd., Shanghai 200433, China)
  • Online:2019-04-30 Published:2019-04-01
  • Contact: LIAO Chencong* (廖晨聪) E-mail:billaday@sjtu.edu.cn

摘要: An isotropic hardening elastoplastic model for soil is presented, which takes into consideration the influence of structure and overconsolidation on strength and deformation of clays. Based on the superloading concept and subloading concept, the inner structural variable ω and overconsolidation variable ρ are introduced to describe the structure and overconsolidation of soil. The present model requires three additional parameters which can be obtained by conventional triaxial test, and the other parameters are same as those of modified Cam-clay (MCC) model. The performance of the proposed model is verified by undrained and drained triaxial tests.

关键词: elastoplastic model, clay, overconsolidation, structure, transformed stress

Abstract: An isotropic hardening elastoplastic model for soil is presented, which takes into consideration the influence of structure and overconsolidation on strength and deformation of clays. Based on the superloading concept and subloading concept, the inner structural variable ω and overconsolidation variable ρ are introduced to describe the structure and overconsolidation of soil. The present model requires three additional parameters which can be obtained by conventional triaxial test, and the other parameters are same as those of modified Cam-clay (MCC) model. The performance of the proposed model is verified by undrained and drained triaxial tests.

Key words: elastoplastic model, clay, overconsolidation, structure, transformed stress

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