Samples containing either entrapped dress and oxide films, gas porosity or small drilled holes have been used to study the effect of different types of defects on the tensile behaviour of an Al-7Si-0.4Mg casting alloy. The tensile properties show little or no correlation with the bulk porosity content, especially in the case of samples containing dress and oxide films. In contrast, the decrease in tensile ductility and strength correlates with the area fraction of defects in the fracture surface of the samples. The experimental results are in agreement with the predictions of a simple analysis based on models for the growth of a plastic instability in a tensile sample
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...
Since mechanical properties of cast Al-Si-Mg alloys are directly influenced by microstructural defec...
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...
ABSTRACT Al-Si-Mg alloys are currently the most popular alloys for obtaining commercial castings, be...
The aim of the research was to evaluate influence of porosity size on mechanical properties of AlSi7...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
Melts of commercially pure liquid aluminum, and an Al-7Si-0.3Mg alloy, were cast into molds designed...
Melts of commercially pure liquid aluminum, and an Al-7Si-0.3Mg alloy, were cast into molds designed...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
Aluminium-silicon alloys having different silicon contents (13, 20 and 27 percent) were used in the ...
Since mechanical properties of cast Al-Si-Mg alloys are directly influenced by microstructural defec...
In this study, the effects of pores on strength and ductility were examined for an Al-Si-Mg alloy pr...
The literature contains reports of several studies correlating the porosity and mechanical propertie...
The literature contains reports of several studies correlating the porosity and mechanical proper-ti...
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...
Since mechanical properties of cast Al-Si-Mg alloys are directly influenced by microstructural defec...
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...
ABSTRACT Al-Si-Mg alloys are currently the most popular alloys for obtaining commercial castings, be...
The aim of the research was to evaluate influence of porosity size on mechanical properties of AlSi7...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
Melts of commercially pure liquid aluminum, and an Al-7Si-0.3Mg alloy, were cast into molds designed...
Melts of commercially pure liquid aluminum, and an Al-7Si-0.3Mg alloy, were cast into molds designed...
none4The main limitation of Al-Si-Mg castings is the considerable influence of the solidification an...
Aluminium-silicon alloys having different silicon contents (13, 20 and 27 percent) were used in the ...
Since mechanical properties of cast Al-Si-Mg alloys are directly influenced by microstructural defec...
In this study, the effects of pores on strength and ductility were examined for an Al-Si-Mg alloy pr...
The literature contains reports of several studies correlating the porosity and mechanical propertie...
The literature contains reports of several studies correlating the porosity and mechanical proper-ti...
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...
Since mechanical properties of cast Al-Si-Mg alloys are directly influenced by microstructural defec...
The effect of casting defects on the tensile properties of high-pressure die-cast AlSi9Cu3(Fe) alloy...