In this research, samples of the H13 steel, a commonly used hot work tool steel in the die/mould manufacturing industry, were additively manufactured using selective laser melting (SLM). Their as-built microstructures were characterised in detail using transmission electron microscopy (TEM) and compared with that of the conventionally manufactured H13 (as-supplied). SLM resulted in the formation of martensite and also its partial decomposition into fine α-Fe and Fe 3 C precipitates along with retained austenite. TEM analyses further revealed that the lattice of the resulting α-Fe phase is slightly distorted due to enhanced Cr, Mo and V contents. Substantially high residual stresses in the range of 940-1420 MPa were detected in the as-built ...
The aim of this paper is to describe the effects of laser processing on the microstructure and resid...
In SLM, a high energy density is applied by a laser to locally melt layers of metallic powder partic...
Additive manufacturing can produce parts with complex geometries in fewer steps than conventional pr...
AISI H13 tool steel is commonly used in hot-working applications include die casting dies, inserts,...
The microstructural-mechanical correlative study has been conducted for characterization of selectiv...
H13 tool steel was additively manufactured by selective laser melting (SLM). The sample printed at a...
The present study is aimed at identifying and testing high-strength alloys for tooling applications ...
Hot working tool steel (AISI H13) is one of the most common die materials used in casting industries...
It is attractive to fabricate molds and dies using additive manufacturing (AM) technology because th...
Selective laser melting is one of the important 3d printing process for its capability of the compl...
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technique that is able to process bo...
Laser cladding is used to deposit desired materials at specified locations to enhance the surface pr...
Microstructural evolution and mechanical properties of H13 steel fabricated by selective laser melti...
Copyright: © 2022 by the authors. H13 stool steel processed by selective laser melting (SLM) suffere...
The aim of this paper is to describe the effects of laser processing on the microstructure and resid...
In SLM, a high energy density is applied by a laser to locally melt layers of metallic powder partic...
Additive manufacturing can produce parts with complex geometries in fewer steps than conventional pr...
AISI H13 tool steel is commonly used in hot-working applications include die casting dies, inserts,...
The microstructural-mechanical correlative study has been conducted for characterization of selectiv...
H13 tool steel was additively manufactured by selective laser melting (SLM). The sample printed at a...
The present study is aimed at identifying and testing high-strength alloys for tooling applications ...
Hot working tool steel (AISI H13) is one of the most common die materials used in casting industries...
It is attractive to fabricate molds and dies using additive manufacturing (AM) technology because th...
Selective laser melting is one of the important 3d printing process for its capability of the compl...
International audienceThe aim of this work was to compare the microstructures of 17-4PH martensitic ...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technique that is able to process bo...
Laser cladding is used to deposit desired materials at specified locations to enhance the surface pr...
Microstructural evolution and mechanical properties of H13 steel fabricated by selective laser melti...
Copyright: © 2022 by the authors. H13 stool steel processed by selective laser melting (SLM) suffere...
The aim of this paper is to describe the effects of laser processing on the microstructure and resid...
In SLM, a high energy density is applied by a laser to locally melt layers of metallic powder partic...
Additive manufacturing can produce parts with complex geometries in fewer steps than conventional pr...