Columnar grains are normally favoured with the high cooling rate and steep thermal gradient in laser-based additive manufacturing. Here, we demonstrate that fine, fully equiaxed grains can be achieved in Mg-3Nd-1Gd-0.5Zr (EV31) alloy by laser surface remelting. The grains in the melt pool are remarkably refined from 74 µm to 3.5 µm, which can be attributed to the growth restriction effect, i.e. the constitutional supercooling formed by Zr solute during solidification in combination with the high cooling rate imposed by laser surface remelting. This novel finding could be applied for the control of grain morphology and alloy design for additive manufacturing applications
Most studies in the area of grain refinement have always taken for granted that higher cooling rate ...
AlSi10Mg samples were fabricated by selective laser melting (SLM) using meander strategy and remelti...
The coarse-grained microstructure of laser surface remelted (LSR) Alx wt.%Cu (x = 2, 5 & 7) is s...
Columnar grains are normally favoured with the high cooling rate and steep thermal gradient in laser...
The microstructures of alloys created via Additive Manufacturing (AM) can vary substantially from th...
One of the challenges facing additive manufacturing is the current lack of control over the microstr...
The effect of surface laser melting on a rare earth rich magnesium alloy (Mg-Nd2.8-Gd1.5-Zr0.5-Zn0.2...
The coarse-grained microstructure of laser surface remelted (LSR) Al–x wt.%Cu (x = 2, 5 & 7) is sign...
Grain structure control is challenging for metal additive manufacturing (AM). Grain structure optimi...
The processing parameters in laser additive manufacturing have a crucial impact on solidification mi...
Additive manufacturing (AM) of magnetic shape-memory alloys (MSMAs) allows fuller use of geometry in...
The Sc-containing Al[sbnd]Mn alloy system produced by additive manufacturing (AM) has recently prese...
Magnetic shape-memory alloys (MSMAs) deform upon exposure to a magnetic field, with magnetically-dri...
Grain refinement of additively manufactured titanium and titanium alloys can be promoted via adding ...
Modification of the microstructure of ZE41A-T5 magnesium alloy substrates was investigated by laser ...
Most studies in the area of grain refinement have always taken for granted that higher cooling rate ...
AlSi10Mg samples were fabricated by selective laser melting (SLM) using meander strategy and remelti...
The coarse-grained microstructure of laser surface remelted (LSR) Alx wt.%Cu (x = 2, 5 & 7) is s...
Columnar grains are normally favoured with the high cooling rate and steep thermal gradient in laser...
The microstructures of alloys created via Additive Manufacturing (AM) can vary substantially from th...
One of the challenges facing additive manufacturing is the current lack of control over the microstr...
The effect of surface laser melting on a rare earth rich magnesium alloy (Mg-Nd2.8-Gd1.5-Zr0.5-Zn0.2...
The coarse-grained microstructure of laser surface remelted (LSR) Al–x wt.%Cu (x = 2, 5 & 7) is sign...
Grain structure control is challenging for metal additive manufacturing (AM). Grain structure optimi...
The processing parameters in laser additive manufacturing have a crucial impact on solidification mi...
Additive manufacturing (AM) of magnetic shape-memory alloys (MSMAs) allows fuller use of geometry in...
The Sc-containing Al[sbnd]Mn alloy system produced by additive manufacturing (AM) has recently prese...
Magnetic shape-memory alloys (MSMAs) deform upon exposure to a magnetic field, with magnetically-dri...
Grain refinement of additively manufactured titanium and titanium alloys can be promoted via adding ...
Modification of the microstructure of ZE41A-T5 magnesium alloy substrates was investigated by laser ...
Most studies in the area of grain refinement have always taken for granted that higher cooling rate ...
AlSi10Mg samples were fabricated by selective laser melting (SLM) using meander strategy and remelti...
The coarse-grained microstructure of laser surface remelted (LSR) Alx wt.%Cu (x = 2, 5 & 7) is s...