316L stainless steel samples are fabricated by metal injection molding using water-atomized and gas-atomized powder with different oxygen contents. The influences of oxygen on the microstructural evolution and fatigue properties of the samples are investigated. The oxygen tends to react with Mn and Si to form oxide particles during sintering. The oxides hamper the densification process and result in decreased sintered density. Moreover, their existence reduces the Mn and Si dissolving into the base metal and compromises the solution strengthening effect. The oxides lead to stress concentration in the tensile and fatigue tests and become the initiation sites of fatigue cracks. After sintering, the samples made from the gas-atomized powder ha...
Sintering is a key step in the metal injection molding process, which affects the final density as w...
This paper investigates the influence of post treatments on the fatigue properties of 316L stainless...
In this study, the bio state of the alloy produced in the modified metal injection system was monito...
316L stainless steel samples are fabricated by metal injection molding using water-atomized and gas-...
This paper describes the microstructural and mechanical properties of injection moulded 17-4 PH stai...
The present study investigates the microstructural evolution and densification behavior of water and...
Additive manufacturing (AM) is a rapidly growing technology which is extending its influence into m...
The microstructures and mechanical properties of the 316L austenitic stainless steel fabricated usin...
This paper describes the electrochemical behavior of injection molded 17-4PH stainless steel gas and...
The fatigue properties and microstructural evolution of 316 L stainless steel (316LSS) manufactured ...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
The effects of sintering condition and powder size on the microstructure of MIMed parts were investi...
The control of the oxygen level plays a key role to successful powder metallurgy of titanium alloys....
The metal injection molding (MIM) of water-atomized 316L stainless steel powder was carried out in t...
The aim of the present work has been to widen the knowledge of how variations within powder manufact...
Sintering is a key step in the metal injection molding process, which affects the final density as w...
This paper investigates the influence of post treatments on the fatigue properties of 316L stainless...
In this study, the bio state of the alloy produced in the modified metal injection system was monito...
316L stainless steel samples are fabricated by metal injection molding using water-atomized and gas-...
This paper describes the microstructural and mechanical properties of injection moulded 17-4 PH stai...
The present study investigates the microstructural evolution and densification behavior of water and...
Additive manufacturing (AM) is a rapidly growing technology which is extending its influence into m...
The microstructures and mechanical properties of the 316L austenitic stainless steel fabricated usin...
This paper describes the electrochemical behavior of injection molded 17-4PH stainless steel gas and...
The fatigue properties and microstructural evolution of 316 L stainless steel (316LSS) manufactured ...
The use of gas-atomized powder as the feedstock material for the Laser Powder Bed Fusion (LPBF) pro...
The effects of sintering condition and powder size on the microstructure of MIMed parts were investi...
The control of the oxygen level plays a key role to successful powder metallurgy of titanium alloys....
The metal injection molding (MIM) of water-atomized 316L stainless steel powder was carried out in t...
The aim of the present work has been to widen the knowledge of how variations within powder manufact...
Sintering is a key step in the metal injection molding process, which affects the final density as w...
This paper investigates the influence of post treatments on the fatigue properties of 316L stainless...
In this study, the bio state of the alloy produced in the modified metal injection system was monito...