AISI H13 tool steel structures were fabricated by selective laser melting which is one of the metal additive manufacturing process. Scanning speed of laser was controlled in the ranging of 100-1000 mm/s to optimize the process parameter to fabricate the highly densified structure. Laser power, hatch space and layer thickness were fixed at 90 W, 80 μm and 25 μm. Under 200 mm/s, spherical shape pores were observed and irregular shape pores were observed in over 400 mm/s samples. Residual pores were not easily removed by changing laser scanning speed alone and laser re-melting technique was applied to solve the pore problem. Each layers were exposed twice to laser with various scanning speed before re-coating the powder for next layer. Spheric...
The advantages of selective laser melting lie in the production of complex, small components in sma...
Although Selective Laser Melting (SLM) provides many advantages compared to conventional machining, ...
It is attractive to fabricate molds and dies using additive manufacturing (AM) technology because th...
AISI H13 tool steel structures were fabricated by selective laser melting which is one of the metal ...
AISIH13 tool steel structures were fabricated by selective laser melting which is one of the metal a...
The densification behavior of H13 tool steel powder by dual speed laser scanning strategy have been ...
The densification behavior of H13 tool steel powder by dual speed laser scanning strategy have been ...
ASTM A131 (EH36 grade) steel samples with a high density (>99.5%) were additively manufactured throu...
Additive manufacturing can produce parts with complex geometries in fewer steps than conventional pr...
Selective laser melting is one of the important 3d printing process for its capability of the compl...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technique that is able to process bo...
Additive Manufacturing (AM) technology has the advantages of complicated geometry fabrication and i...
H13 tool steel was additively manufactured by selective laser melting (SLM). The sample printed at a...
NoThis paper presents the results of a recent comprehensive investigation of selective laser melting...
In this research, samples of the H13 steel, a commonly used hot work tool steel in the die/mould man...
The advantages of selective laser melting lie in the production of complex, small components in sma...
Although Selective Laser Melting (SLM) provides many advantages compared to conventional machining, ...
It is attractive to fabricate molds and dies using additive manufacturing (AM) technology because th...
AISI H13 tool steel structures were fabricated by selective laser melting which is one of the metal ...
AISIH13 tool steel structures were fabricated by selective laser melting which is one of the metal a...
The densification behavior of H13 tool steel powder by dual speed laser scanning strategy have been ...
The densification behavior of H13 tool steel powder by dual speed laser scanning strategy have been ...
ASTM A131 (EH36 grade) steel samples with a high density (>99.5%) were additively manufactured throu...
Additive manufacturing can produce parts with complex geometries in fewer steps than conventional pr...
Selective laser melting is one of the important 3d printing process for its capability of the compl...
Selective Laser Melting (SLM) is an Additive Manufacturing (AM) technique that is able to process bo...
Additive Manufacturing (AM) technology has the advantages of complicated geometry fabrication and i...
H13 tool steel was additively manufactured by selective laser melting (SLM). The sample printed at a...
NoThis paper presents the results of a recent comprehensive investigation of selective laser melting...
In this research, samples of the H13 steel, a commonly used hot work tool steel in the die/mould man...
The advantages of selective laser melting lie in the production of complex, small components in sma...
Although Selective Laser Melting (SLM) provides many advantages compared to conventional machining, ...
It is attractive to fabricate molds and dies using additive manufacturing (AM) technology because th...