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논문 기본 정보

자료유형
학술저널
저자정보
A. Mansoura (University of Quebec at Rimouski) N. Omidi (University of Quebec at Rimouski) N. Barka (University of Quebec at Rimouski) Sasan Sattarpanah Karganroudi (University of Quebec at Trois-Rivières) S. Dehghan (University of Quebec at Rimouski)
저널정보
대한금속·재료학회 Metals and Materials International Metals and Materials International Vol.30 No.9
발행연도
2024.9
수록면
2,343 - 2,371 (29page)
DOI
10.1007/s12540-024-01650-8

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Metal additive manufacturing is revolutionizing how we produce and use materials. Selective Laser Melting (SLM) is oneof the most popular additive manufacturing techniques for creating high-performance metal components. Stainless Steelis preferred for additive manufacturing due to its powder form availability, low cost, mechanical properties, and corrosionresistance. However, the complex thermal history and rapid solidification in the SLM process led to an out-of-equilibriummicrostructure of resulting components, which can affect their mechanical properties. To better understand the relationshipbetween processing, microstructure, and properties, exploring and enhancing SLM-fabricated stainless-steel components isessential. This review comprehensively overviews the selective laser melting process, key processing parameters, and commonlyencountered defects. Furthermore, the study presents a detailed discussion of microstructure, mechanical behavior(including hardness, tensile, and fatigue properties), and corrosion resistance of all SLM-manufactured stainless steel grades,along with the effects of various post-process treatments. This paper reveals that the SLM process can produce stainless steelwith satisfactory performance that may exceed conventionally processed materials. However, the final section highlights thechallenges and research gaps in this field that must be addressed.

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