The fatigue crack growth behavior in Regions 11 and III of crack growth was investigated for hypoeutectic and eutectic Al-Si-Mg cast alloys. To isolate and establish the mechanistic contributions of characteristic microstructural features (dendritic α-Al matrix, eutectic phases, Mg-Si strengthening precipitates), alloys with various Si content/morphology, grain size level, and matrix strength were studied; the effect of secondary dendrite arm spacing (SDAS) was also assessed. In Regions 11 and III of crack growth, the observed changes in the fracture surface appearance were associated with changes in crack growth mechanisms at the microstructural scale (from a linear advance predominantly through primary α-Al to a tortuous advance exclusive...
Additive manufacturing (AM) of Al–Mg–Sc alloys has received considerable interest from the aerospace...
The fatigue crack growth (FCG) behavior of various types of alloys is significantly affected by the ...
Finite element analyses of micronotches including pores and silicon particles of an A356 aluminum al...
The fatigue crack growth behavior in Regions II and III of crack growth was investigated for hypoeut...
Due to the increasing use of cyclically loaded cast aluminum components in automotive and aerospace ...
Fatigue crack growth-based design is a significant modern engineering consideration for the transpor...
For industrial in-series castings, the presence of casting defects, like porosity, geometrically com...
The short fatigue crack growth behaviour in a model cast aluminium piston alloy has been investigate...
AbstractLong and small fatigue crack growth (FCG) studies at various stress ratios have been perform...
Aluminium alloys are promising candidates for energy-and cost-efficient components in automotive and...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
Fatigue properties of casting Al-alloys are very sensitive to the microstructural features of the al...
The fatigue crack growth behaviour under constant amplitude loading of three low alloying artificial...
Pistons are commonly made from multicomponent Al–Si casting alloys, which have complex, interconnect...
Industrial in-series aluminum castings contain a wide range of microstructural heterogeneities like ...
Additive manufacturing (AM) of Al–Mg–Sc alloys has received considerable interest from the aerospace...
The fatigue crack growth (FCG) behavior of various types of alloys is significantly affected by the ...
Finite element analyses of micronotches including pores and silicon particles of an A356 aluminum al...
The fatigue crack growth behavior in Regions II and III of crack growth was investigated for hypoeut...
Due to the increasing use of cyclically loaded cast aluminum components in automotive and aerospace ...
Fatigue crack growth-based design is a significant modern engineering consideration for the transpor...
For industrial in-series castings, the presence of casting defects, like porosity, geometrically com...
The short fatigue crack growth behaviour in a model cast aluminium piston alloy has been investigate...
AbstractLong and small fatigue crack growth (FCG) studies at various stress ratios have been perform...
Aluminium alloys are promising candidates for energy-and cost-efficient components in automotive and...
AbstractThis paper describes a microstructural-based high cycle fatigue behaviour model applied to c...
Fatigue properties of casting Al-alloys are very sensitive to the microstructural features of the al...
The fatigue crack growth behaviour under constant amplitude loading of three low alloying artificial...
Pistons are commonly made from multicomponent Al–Si casting alloys, which have complex, interconnect...
Industrial in-series aluminum castings contain a wide range of microstructural heterogeneities like ...
Additive manufacturing (AM) of Al–Mg–Sc alloys has received considerable interest from the aerospace...
The fatigue crack growth (FCG) behavior of various types of alloys is significantly affected by the ...
Finite element analyses of micronotches including pores and silicon particles of an A356 aluminum al...