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HOME > J Korean Powder Metall Inst > Volume 20(3); 2013 > Article
STS 316L 소결재료의 내식특성에 미치는 합금원소 첨가방법의 영향
김혜성, 김유영, 박동규, 안인섭
The Effect of the Additive Elements Alloying Method on the Corrosion Resistance of Sintered STS 316L
Hye Seong Kim, Yoo Young Kim, Dong Kyu Park, In Shup Ahn
Journal of Korean Powder Metallurgy Institute 2013;20(3):203-209
DOI: https://doi.org/10.4150/KPMI.2013.20.3.203
1경상대학교 나노.신소재공학부 및 LINC사업단
2경남과학기술대학교 기계공학과
3경상대학교 나노.신소재공학부 및 LINC사업단
4경상대학교 나노.신소재공학부 및 LINC사업단
1School of Nano.Advanced Meterial Science & Engineering, and LINC, Gyeongsang National University
2Gyeongnam National University of Science and Technology(GNTECH)
3School of Nano.Advanced Meterial Science & Engineering, and LINC, Gyeongsang National University
4School of Nano.Advanced Meterial Science & Engineering, and LINC, Gyeongsang National University
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In this study, STS 316L powders with 3 wt.% Cu and 1 wt.% Sn known as corrosion-resistance reinforcement elements, are prepared to make different kinds of specimens, in which, 3 wt.% Cu and 1 wt.% Sn are added in different forms by mixing, alloying and fully alloying. After sintering in the same condition, the corrosion resistance, wear resistance and their mechanical properties of specimens are tested respectively. According to the comparison, STS 316L specimen sintered at 1270°C showed the most excellent mechanical property: HRB 78 (hardness), 1130.7 MPa (RCS), 26.6% (Fraction Wear), It was similar with the specimen made of STS316L and fully alloyed Cu and Sn powders, meanwhile, the latter one appears the best corrosion resistance, 75hrs-salt immersion test results. In addition, the specimens with Cu and Sn powders additive showed relatively worse wear resistance in compared with STS316L specimen.

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