This research aims to characterize and examine the microstructure and mechanical properties of the newly developed M789 steel, applied in additive manufacturing. The data presented herein will bring about a broader understanding of the processing-microstructure-property-performance relationships in this material based on its chemical composition and heat treatment. Samples were printed using the laser powder bed fusion (LPBF) process and then the solution was annealed at 1000 degrees C for 1 h, followed by aging at 500 degrees C for soaking times of 3, 6 and 9 h. The AM components showed a relative density of 99.1%, which arose from processing with the following parameters: laser power of 200 W, laser speed of 340 mm/s, and hatch distance o...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
Selective laser melting (SLM) is an additive manufacturing process for the direct fabrication protot...
M789 is a newly developed additively manufactured maraging steel designed to have high strength and ...
This research aims to characterize and examine the microstructure and mechanical properties of the n...
Metal additive manufacturing (AM), also known as 3D printing, is a disruptive manufacturing technolo...
In this paper, a comprehensive study on the microstructure and mechanical properties of an additivel...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
Laser powder bed fusion (LPBF) has been demonstrated as a metal additive manufacturing technique tha...
Additive Manufacturing (AM) technology produces parts in layers and offers design freedom (3D design...
Additive manufacturing techniques allow the creation of complex parts in a layer by layer fashion, b...
The microstructure and room temperature mechanical properties of a18Ni (300) grade maraging steel (M...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
In this work the effect of microstructural homogenization and solution annealing prior to ageing on ...
In this paper, maraging steel powder was deposited on top of an H13 tool steel using laser powder be...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
Selective laser melting (SLM) is an additive manufacturing process for the direct fabrication protot...
M789 is a newly developed additively manufactured maraging steel designed to have high strength and ...
This research aims to characterize and examine the microstructure and mechanical properties of the n...
Metal additive manufacturing (AM), also known as 3D printing, is a disruptive manufacturing technolo...
In this paper, a comprehensive study on the microstructure and mechanical properties of an additivel...
Maraging 300 is an ultrahigh strength steel with significant alloy addition, resulting in a martensi...
Laser powder bed fusion (LPBF) has been demonstrated as a metal additive manufacturing technique tha...
Additive Manufacturing (AM) technology produces parts in layers and offers design freedom (3D design...
Additive manufacturing techniques allow the creation of complex parts in a layer by layer fashion, b...
The microstructure and room temperature mechanical properties of a18Ni (300) grade maraging steel (M...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
Maraging steels are used to produce tools by Additive Manufacturing (AM) methods such as Laser Metal...
In this work the effect of microstructural homogenization and solution annealing prior to ageing on ...
In this paper, maraging steel powder was deposited on top of an H13 tool steel using laser powder be...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
Selective laser melting (SLM) is an additive manufacturing process for the direct fabrication protot...
M789 is a newly developed additively manufactured maraging steel designed to have high strength and ...