粘塑性
本构方程
蠕动
岩土工程
临界状态土力学
消散
机械
粘度
独特性
可塑性
地质学
材料科学
工程类
结构工程
数学
热力学
物理
数学分析
复合材料
有限元法
作者
Davood Dadras-Ajirloo,Gustav Grimstad,Seyed Ali Ghoreishian Amiri
出处
期刊:Geotechnique
[ICE Publishing]
日期:2022-04-05
卷期号:73 (12): 1112-1124
被引量:8
标识
DOI:10.1680/jgeot.21.00245
摘要
The thermodynamically based hyperplasticity framework is employed to develop a hyper-viscoplastic constitutive model describing clay's creep and rate-dependent behaviour. The proposed model complies with the concept of the isotache viscosity and the paradigm of the critical state soil mechanics that is the uniqueness of the critical state friction envelope. A versatile force potential or dissipation rate function is presented that provides adjustability of the location of the critical state while securing a unique critical state friction envelope. A non-associated flow rule as an essential property of frictional material is adopted by further development of the force potential. Adequacy of the proposed constitutive model is evaluated through the simulation of the triaxial tests conducted on Hong Kong marine deposits.
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