>
Fa   |   Ar   |   En
   Effects of particle shape and size distribution on particle size-dependent flow strengthening in metal matrix composites  
   
نویسنده soleymani shishvan s. ,asghari a.h.
منبع scientia iranica - 2017 - دوره : 24 - شماره : 3-B - صفحه:1091 -1099
چکیده    Effects of particle size on metal matrix composites are studied within the continuum theory of mechanism-based strain gradient (cmsg) plasticity. this theory has been quite successful in predicting the size-dependent plastic behavior in a wide variety of problems. two-dimensional (plane-strain) analyses carried out on the composite unit cell models with multi-particles of circular shape show that the flow stress of the composites increases by decreasing particle size with high sensitivity to small particle size. the numerical results are in good agreement with experimental data. subsequently, the effects of particle shape, orientation, and size distributions on the behavior of composites are investigated. analyses are carried out on the composites containing squared, rectangular, and elliptical (with aspect ratio of four) particles of various orientations with respect to the loading direction (i.e., vertical, horizontal, and 45 degree inclined directions). the stress inhomogeneity in the matrix, the overall stress-strain curve, and the maximum principle stress in the particles of composites with non-circular particles are investigated and compared with those obtained for the composites containing circular particles. the effects of particle size distribution on the behavior of composites are also addressed
کلیدواژه Particle-reinforced composites; Mechanical properties; Plastic deformation; Modeling.
آدرس university of tabriz, faculty of civil engineering, ایران, university of tabriz, faculty of civil engineering, ایران
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved