Title of article :
Microstructural evolution of injection molded gas- and water-atomized 316L stainless steel powder during sintering
Author/Authors :
Koseski، نويسنده , , Ryan P. and Suri، نويسنده , , Pavan and Earhardt، نويسنده , , Nicholas B. and German، نويسنده , , Randall M. and Kwon، نويسنده , , Young-Sam، نويسنده ,
Pages :
7
From page :
171
To page :
177
Abstract :
The present study investigates the microstructural evolution and densification behavior of water- and gas-atomized 316L stainless steel powder. Dilatometry and quenching studies were conducted to determine the extent of densification and corresponding microstructural changes. Results indicate that water-atomized powder could be sintered to 97% of theoretical density, while gas-atomized powders could be sintered to near-full density. The difference in the densification behavior is examined in terms of the particle morphology, initial green density and the particle chemistry.
Keywords :
316L , microstructure , Densification , Optical microscopy , Powder metal , Sintering , Powder injection molding (PIM) , Stainless steel
Journal title :
Astroparticle Physics
Record number :
2068430
Link To Document :
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