A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die cast ADC12 aluminium alloy. A damage coupled elastoplastic constitutive model is presented according to the concept of effective stress and the hypothesis of strain equivalence. An elastic fatigue damage model taking into account the pore-induced stress concentration is developed to investigate fatigue damage evolution of the specimens subjected to cyclic loading. The predicted lives for the specimens with different sizes of pores are consistent with the experimental data. The pore-induced fatigue damage and the variation of fatigue life along with the size of pores are also investigated
Polycrystalline elasto-plasticity models provide a general framework for investigating the effect of...
This paper reports on the influence of porosity on constant- and variable-amplitude fatigue of an ag...
Aluminium die-casting is widely used in the automotive industry. Brackets, engine blocks, wheels and...
A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die...
An empirical prediction method for the fatigue strength considering the effect of porosity was propo...
Fatigue life prediction is one of the most important problems in design of industrial components mad...
Effect of casting defects on the fatigue strength of die cast aluminum alloy was addressed through t...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
Defects, particularly porosity and oxides, in high-pressure die casting can seriously compromise the...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
Cast parts usually inherit internal defects such as micro shrinkage pores due to the manufacturing p...
The scatter in the fatigue life of the metallic structures seems to be mainly caused by internal def...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
In aluminium castings the degree of porosity influences the fatigue strength in different ways, depe...
This paper focuses on the fatigue lifetime estimation of metallic components containing group of por...
Polycrystalline elasto-plasticity models provide a general framework for investigating the effect of...
This paper reports on the influence of porosity on constant- and variable-amplitude fatigue of an ag...
Aluminium die-casting is widely used in the automotive industry. Brackets, engine blocks, wheels and...
A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die...
An empirical prediction method for the fatigue strength considering the effect of porosity was propo...
Fatigue life prediction is one of the most important problems in design of industrial components mad...
Effect of casting defects on the fatigue strength of die cast aluminum alloy was addressed through t...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
Defects, particularly porosity and oxides, in high-pressure die casting can seriously compromise the...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
Cast parts usually inherit internal defects such as micro shrinkage pores due to the manufacturing p...
The scatter in the fatigue life of the metallic structures seems to be mainly caused by internal def...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
In aluminium castings the degree of porosity influences the fatigue strength in different ways, depe...
This paper focuses on the fatigue lifetime estimation of metallic components containing group of por...
Polycrystalline elasto-plasticity models provide a general framework for investigating the effect of...
This paper reports on the influence of porosity on constant- and variable-amplitude fatigue of an ag...
Aluminium die-casting is widely used in the automotive industry. Brackets, engine blocks, wheels and...