17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicated molds with conformal cooling channels using laser powder bed fusion process (L-PBF). However, their microstructure in the as-printed condition varies notably with the chemical composition of the feedstock powder, resulting in different age-hardening behavior. In the present investigation, 17–4 PH stainless steel components were fabricated by L-PBF from two different feedstock powders, and subsequently subjected to different combinations of post-process heat treatments. It was observed that the microstructure in as-printed conditions could be almost fully martensitic or ferritic, depending on the ratio of Creq/Nieq of the feedstock powder. A...
The understanding of relationships between processing, microstructure and mechanical properties in l...
Laser powder bed fusion (L-PBF)-processed 17-4 PH stainless steel (SS) generally exhibits a non-equi...
This study aims to characterize the microstructure and crystallographic texture of 17-4 PH stainles...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
The 17-4 precipitation-hardened (PH) stainless steel was prepared by laser-powder bed fusion (L-PBF)...
This work focuses on the structure and properties of a laser powder bed-fused (LPBF) precipitation h...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
In this study, we report the mechanical properties, microstructure and corrosion behavior 99+ % dens...
The understanding of relationships between processing, microstructure and mechanical properties in l...
Laser powder bed fusion (L-PBF)-processed 17-4 PH stainless steel (SS) generally exhibits a non-equi...
This study aims to characterize the microstructure and crystallographic texture of 17-4 PH stainles...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
Laser powder bed fusion (L-PBF), also commonly referred to selective laser melting, has been attract...
The 17-4 precipitation-hardened (PH) stainless steel was prepared by laser-powder bed fusion (L-PBF)...
This work focuses on the structure and properties of a laser powder bed-fused (LPBF) precipitation h...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
Additive manufacturing of a low carbon Fe–Cr–Ni–Al maraging stainless steel (with the brand name CX)...
In this study, we report the mechanical properties, microstructure and corrosion behavior 99+ % dens...
The understanding of relationships between processing, microstructure and mechanical properties in l...
Laser powder bed fusion (L-PBF)-processed 17-4 PH stainless steel (SS) generally exhibits a non-equi...
This study aims to characterize the microstructure and crystallographic texture of 17-4 PH stainles...