>
Fa   |   Ar   |   En
   non-associative fractional-order bounding-surface model for granular soils considering state dependence  
   
نویسنده sun yifei ,gao yufeng ,shen yang
منبع international journal of civil engineering - 2019 - دوره : 17 - شماره : 2 - صفحه:171 -179
چکیده    The constitutive behaviour of granular soil is usually non-associative and depends on the soil density and pressure. to simulate such dependence of the non-associative stress–strain response on material state, two distinct yielding and plastic potential surfaces were usually suggested in the traditional elastoplastic models, which, however, made the model to become complex. to solve this problem, a simple fractional-order plasticity model without using any plastic potential functions was proposed before. however, the model did not consider the dependence of deformation on the density and pressure of soil, which could make the model incompatible with the critical-state soil mechanics. in contrast to the previous study, a state-dependent non-associative bounding-surface model within the framework of critical-state soil mechanics is proposed in this study. the plastic flow direction is obtained using a state-dependent fractional-order differentiation of the bounding surface. to demonstrate the capability of the model, drained and undrained triaxial test results of different granular soils under a variety of initial states are simulated, from which good agreement between the model predictions and the test results is observed.
کلیدواژه factional calculus ,plastic flow ,granular soil ,constitutive model
آدرس key laboratory of ministry of education for geomechanics and embankment engineering, hohai university, jiangsu research centre for geotechnical engineering technology, china, key laboratory of ministry of education for geomechanics and embankment engineering, hohai university, college of civil and transportation engineering, china, key laboratory of ministry of education for geomechanics and embankment engineering, hohai university, college of civil and transportation engineering, china
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved