Objective of the present study is the definition of a material model accounting for fatigue damage and degradation. The model is formulated as a brittle damage model in the otherwise linear elastic framework. A stress driven damage evolution equation is derived from microplasticity considerations. The model is implemented as a user-defined material model into a commercial finite element program. In a comparison with experimental data in the low cycle fatigue regime, a good agreement with the numerical prediction is obtained
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...
A major issue concerning Carbon Fibre Reinforced Polymer (CFRP) materials under cyclic loading is th...
Carbon fiber-reinforced polymer (CFRP) composite laminates used as loadbearing structures, such as s...
Carbon fiber-reinforced polymer (CFRP) composite laminates used as loadbearing structures, such as s...
Objective of the present study is the definition of a continuum damage mechanics material model desc...
This paper presents a constitutive modeling of material damage capable of characterizing fatigue dam...
This paper discusses the prediction of fatigue response of composites using an empirical strength an...
This paper discusses the prediction of fatigue response of composites using an empirical strength an...
A new model for fatigue damage evolution of polymer matrix composites is presented. The model is bas...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Properties of Carbon Fiber Reinforced Polymer (CFRP) degrade because of damage accumulation during c...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...
A major issue concerning Carbon Fibre Reinforced Polymer (CFRP) materials under cyclic loading is th...
Carbon fiber-reinforced polymer (CFRP) composite laminates used as loadbearing structures, such as s...
Carbon fiber-reinforced polymer (CFRP) composite laminates used as loadbearing structures, such as s...
Objective of the present study is the definition of a continuum damage mechanics material model desc...
This paper presents a constitutive modeling of material damage capable of characterizing fatigue dam...
This paper discusses the prediction of fatigue response of composites using an empirical strength an...
This paper discusses the prediction of fatigue response of composites using an empirical strength an...
A new model for fatigue damage evolution of polymer matrix composites is presented. The model is bas...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Properties of Carbon Fiber Reinforced Polymer (CFRP) degrade because of damage accumulation during c...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Damage growth models are the linchpin of model-based prognostics for aging or damaged structures. Fa...
Analytical and numerical electro-mechanical models are developed to predict the electrical resistanc...