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An analytical solution to the elastic-plastic behavior of metal matrix composites under tensile loading
, Article 29th Congress of the International Council of the Aeronautical Sciences, ICAS 2014 ; 2014 ; Mondali, M ; Abedian, A ; Sharif University of Technology
2014
Abstract
An analytical approach is proposed for studying the elastic-plastic behavior of short fiber reinforced metal matrix composites under tensile loading. In the proposed method, a micromechanical approach is employed, considering an axi-symmetric unit cell including one fiber and the surrounding matrix. First, the governing equations and the boundary conditions are derived and the elastic solution is obtained based on some shear lag type methods. A plastic deformation is considered for the matrix under each small tensile loading step. Then, applying the successive elastic solutions method, all the plastic strain terms are obtained for the matrix. Thereafter, the elastic-plastic stress transfer...
A new approach to the elastic–plastic stress transfer analysis of metal matrix composites
, Article Archive of Applied Mechanics ; Volume 85, Issue 11 , November , 2015 , Pages 1701-1717 ; 09391533 (ISSN) ; Mondali, M ; Abedian, A ; Sharif University of Technology
Springer Verlag
2015
Abstract
An analytical approach is proposed for studying the elastic–plastic behavior of short-fiber-reinforced metal matrix composites under tensile loading. In the proposed research, a micromechanical approach is employed, considering an axisymmetric unit cell including one fiber and the surrounding matrix. First, the governing equations and the boundary conditions are derived and the elastic solution is obtained based on some shear-lag-type methods. Since under normal loading conditions and according to the fiber material characteristics, the metal matrix undergoes plastic deformation, while the fiber remains within the elastic region, a plastic deformation is considered for the matrix under each...
Elastic-Plastic Behavior Analysis of Short Fiber Metal Matrix Composites under Thermal Loading
, Ph.D. Dissertation Sharif University of Technology ; Abedian, Ali (Supervisor) ; Mondali, Mahdi (Supervisor)
Abstract
The use of metal matrix composite materials (MMC) in aerospace structures and engine parts has become more frequent recently. These materials are composed of metal matrices reinforced by hard discontinuous ceramic fibers, usually oriented longitudinally within the matrix, and due to the stability of the mechanical properties, including the hardness and the strength at high working temperatures, have found various applications.Stress transfer from the matrix to the fiber is known as the most important mechanism governing the deformation and the fracture response of such MMCs. The stress transfer characteristic of fiber reinforced composite materials under various mechanical and thermal...