Supreme tensile properties in precipitation-hardened 316L stainless steel fabricated through powder cold-consolidation and annealing

  • Lee, Do Won
  • Asghari-Rad, Peyman
  • Heo, Yoon-Uk
  • Son, Sujung
  • Park, Hyojin
  • ... Jang, Jae-il
  • 외 3명
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초록

One of the key goals of processing 316L stainless steel by powder metallurgy (PM) techniques is to achieve industrial-viable tensile properties without structural defects like poor densification, undesired phase transitions, and oxidation during high-temperature sintering. To address this, this study adopts high-pressure torsion to fabricate a fully dense structure at ambient temperature through cold consolidation. The samples fabricated by the present PM-based technique exhibits considerably enhanced tensile properties compared to counterparts processed by conventional PM techniques, with a remarkable yield strength of 1 GPa and total elongation of 46%. Additionally, the segregation of certain elements during subsequent annealing results in a unique microstructure with nano-scale sigma precipitates which induces dislocation pile-up, leading to improved yield strength and retarded dislocation motion. The results indicate that the present PM-based route is an applicable technique to achieve the strength-ductility synergy in 316L stainless steel.

키워드

Cold-consolidationGrain refinementHigh-pressure torsionPowder metallurgySigma phase precipitationAustenitic stainless steelFabricationNanotechnologyPilesPowder metallurgySinteringTorsional stressYield stress
제목
Supreme tensile properties in precipitation-hardened 316L stainless steel fabricated through powder cold-consolidation and annealing
저자
Lee, Do WonAsghari-Rad, PeymanHeo, Yoon-UkSon, SujungPark, HyojinLee, Ji-SuJang, Jae-ilLee, Byeong-JooKim, Hyoung Seop
DOI
10.1016/j.msea.2024.146107
발행일
2024-02
유형
Article; Early Access
저널명
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing
893
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