In the endeavor to maximize the refinement effect of primary Si and alleviate the inherent brittleness of hypereutectic Al-Si alloy, the approach of coating P as a modifier on powder was adopted. The ulti-mate aim was to create more heterogeneous fine AlP nucleus and enhance the nucleation efficiency of primary Si on AlP to refine the coarse primary Si to nano-scale during 3D printing. In the combination of large undercooling and high density of nucleation sites, the size of primary Si was successfully refined to 20 0-30 0 nm and the divorced eutectic was also induced to modify the microstructure of matrix. In the presence of nano-scale primary Si, the melting pool boundary (MPB) feature disappeared and the fracture mechanism also changed f...
Al–5Ti–C master alloy was prepared and used to modify hypereutectic Al–20%Si alloy. The microstruct...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...
A novel Si-18Mn-16Ti-11P master alloy has been developed to refine primary Si to 14.7 ± 1.3 μm, dist...
In the endeavor to maximize the refinement effect of primary Si and alleviate the inherent brittlene...
Hypereutectic Al-high Si alloys are of immense interest for applications in the automotive, space or...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
The testing blocks of AlSi7MgTi alloy were prepared by selective laser melting (SLM) technique and T...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Al–5Ti–C master alloy was prepared and used to modify hypereutectic Al–20%Si alloy. The microstruct...
Al–5Ti–C master alloy was prepared and used to modify hypereutectic Al–20%Si alloy. The microstruct...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...
A novel Si-18Mn-16Ti-11P master alloy has been developed to refine primary Si to 14.7 ± 1.3 μm, dist...
In the endeavor to maximize the refinement effect of primary Si and alleviate the inherent brittlene...
Hypereutectic Al-high Si alloys are of immense interest for applications in the automotive, space or...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Despite additive manufacturing processes are already widely used in several industrial applications,...
The testing blocks of AlSi7MgTi alloy were prepared by selective laser melting (SLM) technique and T...
Despite additive manufacturing processes are already widely used in several industrial applications,...
Al–5Ti–C master alloy was prepared and used to modify hypereutectic Al–20%Si alloy. The microstruct...
Al–5Ti–C master alloy was prepared and used to modify hypereutectic Al–20%Si alloy. The microstruct...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...
A novel Si-18Mn-16Ti-11P master alloy has been developed to refine primary Si to 14.7 ± 1.3 μm, dist...