AbstractThe liquid phase separation process and solidification process of ternary Al81.3Sn12.3Cu6.4 monotectic alloy was accomplished with a 20kHz ultrasonic field in the power range up to 500W. As ultrasound power rised, the coarse primary (Al) dendrites turned into fine equiaxed grains, whose size decreased by one order of magnitude as that during static solidification. Meanwhile, rather than pronounced segregation of large secondary (Sn) blocks in the alloy sample solidified under static condition, tiny secondary (Sn) droplets dispersed homogenously within the (Al) matrix in the presence of ultrasound. Under the highest ultrasound power of 500W, the spherical ternary (Al+Sn+θ(Al2Cu)) monotectic cells formed. The refinement of primary (Al...
The effect of ultrasonic treatment on the formation of primary Al3Zr was investigated by applying ul...
Solidification microstructures formed under high-intensity ultrasonication are systematically invest...
The aim of this work was to evaluate the advantages in using semisolid processing of Al-Sn alloys in...
AbstractThe liquid phase separation process and solidification process of ternary Al81.3Sn12.3Cu6.4 ...
AbstractIt is well-known that the application of ultrasound during liquid to solid transitions for a...
The microstructural refinement of 2195 aluminum alloy ingots is particularly important for improving...
An overview of our investigations on solidification microstructure formation under ultrasonication i...
This experiment utilized five Aluminum alloys with silicon content percentages of 7, 10, 12.6, 14.5 ...
Solidification microstructures formed under high-intensity ultrasonication are systematically invest...
AbstractUltrasonic field with a frequency of 20kHz is introduced into the solidification process of ...
Physical grain refinement is examined under high-intensity ultrasonication during solidification in ...
This study evaluated the effect of UltraSonic Treatment (UST) on a range of Al–Mg alloys. Prev...
Sn-Sb peritectic alloy was treated with 400 W, 600 W and 800 W ultrasonic, respectively, to study th...
A novel MMM (Multi-frequency, Multimode, Modulated) ultrasonic (US) technology was used to refine th...
The influence of high intensity ultrasound (US) propagating through a steel mold on the microstructu...
The effect of ultrasonic treatment on the formation of primary Al3Zr was investigated by applying ul...
Solidification microstructures formed under high-intensity ultrasonication are systematically invest...
The aim of this work was to evaluate the advantages in using semisolid processing of Al-Sn alloys in...
AbstractThe liquid phase separation process and solidification process of ternary Al81.3Sn12.3Cu6.4 ...
AbstractIt is well-known that the application of ultrasound during liquid to solid transitions for a...
The microstructural refinement of 2195 aluminum alloy ingots is particularly important for improving...
An overview of our investigations on solidification microstructure formation under ultrasonication i...
This experiment utilized five Aluminum alloys with silicon content percentages of 7, 10, 12.6, 14.5 ...
Solidification microstructures formed under high-intensity ultrasonication are systematically invest...
AbstractUltrasonic field with a frequency of 20kHz is introduced into the solidification process of ...
Physical grain refinement is examined under high-intensity ultrasonication during solidification in ...
This study evaluated the effect of UltraSonic Treatment (UST) on a range of Al–Mg alloys. Prev...
Sn-Sb peritectic alloy was treated with 400 W, 600 W and 800 W ultrasonic, respectively, to study th...
A novel MMM (Multi-frequency, Multimode, Modulated) ultrasonic (US) technology was used to refine th...
The influence of high intensity ultrasound (US) propagating through a steel mold on the microstructu...
The effect of ultrasonic treatment on the formation of primary Al3Zr was investigated by applying ul...
Solidification microstructures formed under high-intensity ultrasonication are systematically invest...
The aim of this work was to evaluate the advantages in using semisolid processing of Al-Sn alloys in...