New elastoplastic J 2 -flow constitutive equations at finite deformations are proposed for the purpose of simulating the fatigue failure behavior for metal matrix composites. A new, direct approach is established in a two-fold sense of unification. Namely, both low and high cycle fatigue failure effects of metal matrix composites may be simultaneously simulated for various cases of the weight percentage of reinforcing particles. Novel results are presented in four respects. First, both the yield condition and the loading–unloading conditions in a usual sense need not be involved but may be automatically incorporated into inherent features of the proposed constitutive equations; second, low-to-high cycle fatigue failure effects may be...
A micro-mechanical damage model for high cycle fatigue loading based on thermo-dynamical principles ...
The cyclic fatigue behavior of short fiber reinforced metal matrix composites was studied. Three fat...
The present thesis aims at advancing an innovative computational methodology that simulates steel an...
New elastoplastic J 2 -flow constitutive equations at finite deformations are proposed for th...
Theory of Cells and a numerical FE method based on strain cyclic plasticity, damage model and techno...
Theory of Cells and a numerical FE method based on strain cyclic plasticity, damage model and techno...
The behavior of fibre-reinforced composites is examined through the formulation of a micromechanical...
The need of weight reduction for fuel reduction and CO2 regulations enforces the use of light-weight...
Composite materials, like metals, are subject to fatigue effects, representing one of the main cause...
A new model for fatigue damage evolution of polymer matrix composites is presented. The model is bas...
A mathematical model describing the processes of elastoplastic deformation and damage accumulation u...
A computationally efficient fatigue analysis methodology is proposed that uses a cycle jump approach...
A simple mathematical model (cylinder model) is proposed and used to evaluate various constitutive l...
Cyclic plasticity and damage of a metal matrix composite have been studied in the framework of conti...
The necessity to describe the overall mechanical behaviour of composite materials is a crucial task ...
A micro-mechanical damage model for high cycle fatigue loading based on thermo-dynamical principles ...
The cyclic fatigue behavior of short fiber reinforced metal matrix composites was studied. Three fat...
The present thesis aims at advancing an innovative computational methodology that simulates steel an...
New elastoplastic J 2 -flow constitutive equations at finite deformations are proposed for th...
Theory of Cells and a numerical FE method based on strain cyclic plasticity, damage model and techno...
Theory of Cells and a numerical FE method based on strain cyclic plasticity, damage model and techno...
The behavior of fibre-reinforced composites is examined through the formulation of a micromechanical...
The need of weight reduction for fuel reduction and CO2 regulations enforces the use of light-weight...
Composite materials, like metals, are subject to fatigue effects, representing one of the main cause...
A new model for fatigue damage evolution of polymer matrix composites is presented. The model is bas...
A mathematical model describing the processes of elastoplastic deformation and damage accumulation u...
A computationally efficient fatigue analysis methodology is proposed that uses a cycle jump approach...
A simple mathematical model (cylinder model) is proposed and used to evaluate various constitutive l...
Cyclic plasticity and damage of a metal matrix composite have been studied in the framework of conti...
The necessity to describe the overall mechanical behaviour of composite materials is a crucial task ...
A micro-mechanical damage model for high cycle fatigue loading based on thermo-dynamical principles ...
The cyclic fatigue behavior of short fiber reinforced metal matrix composites was studied. Three fat...
The present thesis aims at advancing an innovative computational methodology that simulates steel an...