Laser cladding deposition (LCD) is widely used to remanufacture/repair workpieces because of its high design freedom to rebuild areas of damage. However, the process often introduces a columnar grain structure in the cladding layer, resulting in a large variation of microstructure and hardness across the cladding layer, welding interface, and base metal. Under fatigue and tensile loading, fractures can initiate in the lower hardness cladding layer. This study explores the feasibility of a new hybrid remanufacturing method integrating the LCD with a subsequent hot deformation process to refine grain structures, reduce hardness variations, and enhance mechanical properties. The effects of deformation temperatures and imposed plastic strains w...
Additive manufacturing (AM) processes may introduce large residual stresses in the as-built part, in...
Laser cladding is a powder deposition technique, which is used to deposit layers of clad material on...
316L stainless steel samples have been prepared by selective laser melting (SLM) using a pulsed lase...
The novel hybrid manufacturing process incorporating additive manufacturing (AM) with a subsequent h...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
In this study, the enhancement of additively manufactured (AM) 316L, by annealing, to the fully reve...
The high-temperature deformation behavior of additively manufactured 316 L stainless steels prepared...
A 1.5 kW CO2 pulsed laser was used to melt the surface of AISI 316L stainless steel with a view to e...
Laser processes such as laser-powder bed fusion, surface laser polishing, and laser engraving are un...
Additive manufacturing techniques are being used more and more to perform the precise fabrication of...
Published ArticleTo remove residual stresses, an as-built SLM object is usually post-treated. This t...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
International audienceWe report that 316L austenitic stainless steel fabricated by direct laser depo...
Thin AISI 430 ferritic stainless steel sheets containing 18% Cr were hardened by continuous-wave las...
AbstractLaser melting deposition was carried out to deposit a 1Cr12Ni2WMoVNb steel bar on a wrought ...
Additive manufacturing (AM) processes may introduce large residual stresses in the as-built part, in...
Laser cladding is a powder deposition technique, which is used to deposit layers of clad material on...
316L stainless steel samples have been prepared by selective laser melting (SLM) using a pulsed lase...
The novel hybrid manufacturing process incorporating additive manufacturing (AM) with a subsequent h...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
In this study, the enhancement of additively manufactured (AM) 316L, by annealing, to the fully reve...
The high-temperature deformation behavior of additively manufactured 316 L stainless steels prepared...
A 1.5 kW CO2 pulsed laser was used to melt the surface of AISI 316L stainless steel with a view to e...
Laser processes such as laser-powder bed fusion, surface laser polishing, and laser engraving are un...
Additive manufacturing techniques are being used more and more to perform the precise fabrication of...
Published ArticleTo remove residual stresses, an as-built SLM object is usually post-treated. This t...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
International audienceWe report that 316L austenitic stainless steel fabricated by direct laser depo...
Thin AISI 430 ferritic stainless steel sheets containing 18% Cr were hardened by continuous-wave las...
AbstractLaser melting deposition was carried out to deposit a 1Cr12Ni2WMoVNb steel bar on a wrought ...
Additive manufacturing (AM) processes may introduce large residual stresses in the as-built part, in...
Laser cladding is a powder deposition technique, which is used to deposit layers of clad material on...
316L stainless steel samples have been prepared by selective laser melting (SLM) using a pulsed lase...