AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-Si alloys used in an automobile context. These materials are characterized by the presence of different microstructural heterogeneities at different scales: the aluminium matrix (DAS/SDAS and the precipitation hardening level), inclusions (Si particles and intermetallic) and casting defects (porosity). It is shown that the effects of these factors on the HCF damage mechanisms are important and can depend on the loading mode. A multiaxial fatigue test campaign has been carried out using three cast aluminium alloys, fabricated by different casting processes (gravity die casting and lost foam casting), associated with several heat treatme...
Aluminium alloys are promising candidates for energy-and cost-efficient components in automotive and...
Cast aluminium components may exhibit material imperfections such as shrinkage and gas pores, or oxi...
The fatigue behavior of Al-Si-Mg casting alloys is affected by the solidification microstructure and...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
This article is dedicated to the high cycle fatigue (HCF) behaviour of cast Al-Si alloys. In particu...
This article is dedicated to the high cycle fatigue behaviour of cast hypo-eutectic Al-Si alloys. In...
This article is dedicated to the high cycle fatigue behaviour of cast hypo-eutectic Al-Si alloys and...
Industrial in-series aluminum castings contain a wide range of microstructural heterogeneities like ...
Cast Al-Si alloys have been widely used in automobile applications thanks to their low density and e...
This work treats the influence of the microstructural heterogeneities on the multiaxial high cycle f...
This article describes a microstructural-based high cycle fatigue strength modelling approach applie...
International audienceCast Al-Si alloys have been widely used in automotive applications with regard...
In this work, the high cycle fatigue behavior of cast hypo-eutectic Al-Si alloys is investigated. It...
Aluminium alloys are promising candidates for energy-and cost-efficient components in automotive and...
Cast aluminium components may exhibit material imperfections such as shrinkage and gas pores, or oxi...
The fatigue behavior of Al-Si-Mg casting alloys is affected by the solidification microstructure and...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
This paper describes a microstructural-based high cycle fatigue behaviour model applied to cast Al-S...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
This article is dedicated to the high cycle fatigue (HCF) behaviour of cast Al-Si alloys. In particu...
This article is dedicated to the high cycle fatigue behaviour of cast hypo-eutectic Al-Si alloys. In...
This article is dedicated to the high cycle fatigue behaviour of cast hypo-eutectic Al-Si alloys and...
Industrial in-series aluminum castings contain a wide range of microstructural heterogeneities like ...
Cast Al-Si alloys have been widely used in automobile applications thanks to their low density and e...
This work treats the influence of the microstructural heterogeneities on the multiaxial high cycle f...
This article describes a microstructural-based high cycle fatigue strength modelling approach applie...
International audienceCast Al-Si alloys have been widely used in automotive applications with regard...
In this work, the high cycle fatigue behavior of cast hypo-eutectic Al-Si alloys is investigated. It...
Aluminium alloys are promising candidates for energy-and cost-efficient components in automotive and...
Cast aluminium components may exhibit material imperfections such as shrinkage and gas pores, or oxi...
The fatigue behavior of Al-Si-Mg casting alloys is affected by the solidification microstructure and...