An in-situ nano-TiB2 decorated AlSi10Mg composite (NTD-Al) powder was fabricated by gas-atomisation for selective laser melting (SLM). Fully dense and crack-free NTD-Al samples were produced using SLM. In contrast to the NTD-Al powder without cell-like microstructure, the SLMed NTD-Al had a textureless microstructure, consisting of fine grains and cells, with well dispersed nano-TiB2 particles inside the grains and rod-like nano-Si precipitates inside the cells. Both nano-TiB2 particles and nano-Si precipitates exhibited a highly coherent interface with the Al matrix, indicative of a strong interfacial bonding. The formation of this microstructure was attributed to the sequential solidification of non-equilibrium and eutectic Al-Si upon rap...
Al-12Si specimens are produced by selective laser melting (SLM) from gas atomized powders. Installat...
Additive manufacturing technique has been developed to speed up the manufacturing process besides al...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...
It is reported that the ductility and strength of a metal matrix composite could be concurrently imp...
It is reported that the ductility and strength of a metal matrix composite could be concurrently imp...
Single track and single layer AlSi10Mg has been produced by selective laser melting (SLM) of alloy p...
Metal additive manufacturing offers a tool to bring formerly unmanufacturable, geometrically complex...
AbstractThe nanoscale TiC particle reinforced AlSi10Mg nanocomposite parts were produced by selectiv...
A novel ring-structured nanoscale TiC reinforcement with a regular distribution was tailored along t...
Considerable studies on metal selective laser melting (SLM) have proved the necessity to refine micr...
The selective laser melting (SLM) of aluminium alloys is of great current interest at both the indu...
Selective laser melting (SLM) of aluminium is of research interest because of its potential benefits...
In order to further enhance the performance of the AlSi10Mg parts fabricated by selective laser melt...
The nanoscale TiC particle reinforced AlSi10Mg nanocomposite parts were produced by selective laser ...
This study shows that AlSi10Mg parts with an extremely fine microstructure and a controllable textur...
Al-12Si specimens are produced by selective laser melting (SLM) from gas atomized powders. Installat...
Additive manufacturing technique has been developed to speed up the manufacturing process besides al...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...
It is reported that the ductility and strength of a metal matrix composite could be concurrently imp...
It is reported that the ductility and strength of a metal matrix composite could be concurrently imp...
Single track and single layer AlSi10Mg has been produced by selective laser melting (SLM) of alloy p...
Metal additive manufacturing offers a tool to bring formerly unmanufacturable, geometrically complex...
AbstractThe nanoscale TiC particle reinforced AlSi10Mg nanocomposite parts were produced by selectiv...
A novel ring-structured nanoscale TiC reinforcement with a regular distribution was tailored along t...
Considerable studies on metal selective laser melting (SLM) have proved the necessity to refine micr...
The selective laser melting (SLM) of aluminium alloys is of great current interest at both the indu...
Selective laser melting (SLM) of aluminium is of research interest because of its potential benefits...
In order to further enhance the performance of the AlSi10Mg parts fabricated by selective laser melt...
The nanoscale TiC particle reinforced AlSi10Mg nanocomposite parts were produced by selective laser ...
This study shows that AlSi10Mg parts with an extremely fine microstructure and a controllable textur...
Al-12Si specimens are produced by selective laser melting (SLM) from gas atomized powders. Installat...
Additive manufacturing technique has been developed to speed up the manufacturing process besides al...
AlSi10Mg processed by Selective Laser Melting (SLM) exhibits a very fine cellular-eutectic microstru...