W–Ni–Cu alloy (90 wt% W, 7.5 wt% Ni, and 2.5 wt% Cu) parts were successfully fabricated via selective laser melting method. Phases, microstructure, compositions, and laser forming parameters of laser melted samples were investigated. It was found that the W–Ni–Cu powder system was based on the mechanism of liquid solidification. This process was realized through full melting of W, Ni, and Cu particles under high laser energy input. However, using relatively lower energy input, particle bonding was realized through liquid phase sintering with complete melting of Ni–Cu acting as binder and nonmelting of W acting as structure. Due to the Ni–Cu solid solution phase that appeared in a wide range from 1,084 to 1,455 °C, a coherent matrix interfac...
The selective laser melting (SLM) behaviour of Cu10Ni in-house gas atomized powders is investigated....
This study investigated the synthesis of CuCrFeNiTiAl high entropy alloy (HEA) from pure elements u...
Through the incorporation of phosphorus (P) as a third component, an in-situ formation of a magnetic...
Selective laser melting (SLM) was used to fabricate different W-Ni-Fe tungsten heavy alloy grades (N...
For the first time, a powder of W-5Ni-2Fe composition with spherical particles from 15 to 50 microns...
Selective laser melting (SLM) is an additive manufacturing technique which enables fabrication of th...
Phase composition and microstructure of initial WC, BK8 (powder alloy 92 wt.% WC–8 wt.% Co), Co powd...
Advanced tools with superabrasive grains like diamond and cubic boron nitride are widely applied for...
A customized Al-Cu-Mg-Si alloy is successfully processed by selective laser melting. AlSi10Mg powder...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 µm size, for the se...
Pure Copper (Cu) is very difficult to prepare using selective laser melting (SLM) technology. This w...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 μm size, for the s...
In order to achieve rapid manufacturing of tungsten-copper alloy part, copper alloy parts (CuW, CuSn...
The Laser Melt Injection (LMI) process is explored to create a protective Metal Matrix Composite (MM...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
The selective laser melting (SLM) behaviour of Cu10Ni in-house gas atomized powders is investigated....
This study investigated the synthesis of CuCrFeNiTiAl high entropy alloy (HEA) from pure elements u...
Through the incorporation of phosphorus (P) as a third component, an in-situ formation of a magnetic...
Selective laser melting (SLM) was used to fabricate different W-Ni-Fe tungsten heavy alloy grades (N...
For the first time, a powder of W-5Ni-2Fe composition with spherical particles from 15 to 50 microns...
Selective laser melting (SLM) is an additive manufacturing technique which enables fabrication of th...
Phase composition and microstructure of initial WC, BK8 (powder alloy 92 wt.% WC–8 wt.% Co), Co powd...
Advanced tools with superabrasive grains like diamond and cubic boron nitride are widely applied for...
A customized Al-Cu-Mg-Si alloy is successfully processed by selective laser melting. AlSi10Mg powder...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 µm size, for the se...
Pure Copper (Cu) is very difficult to prepare using selective laser melting (SLM) technology. This w...
This work investigates the use of fine Cu powder, with ~ 20 vol% smaller than 15 μm size, for the s...
In order to achieve rapid manufacturing of tungsten-copper alloy part, copper alloy parts (CuW, CuSn...
The Laser Melt Injection (LMI) process is explored to create a protective Metal Matrix Composite (MM...
In this study, a novel approach of powder surface alloying is proposed to address the issue of insuf...
The selective laser melting (SLM) behaviour of Cu10Ni in-house gas atomized powders is investigated....
This study investigated the synthesis of CuCrFeNiTiAl high entropy alloy (HEA) from pure elements u...
Through the incorporation of phosphorus (P) as a third component, an in-situ formation of a magnetic...