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Effects of Additive Manufacturing on the Mechanical and Corrosion Properties of Austenic Stainless Steel

János Endre MAróTi, Dávid Miklós KEMény

2019enadditive manufacturingstainless steelcorrosionmechanical testingmetal 3D printing

Abstract

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Additive manufacturing (AM) offers the possibility to produce complex parts without the design constraints of traditional manufacturing routes. Our aim was to determine different mechanical and corrosion properties of direct metal laser sintered austenitic stainless steel (X2CrniMo17-12-2) material using tensile test, Charpy impact test, scanning electron microscopy, and corrosion test. The measured values were evaluated, and our results were compared with literary values; furthermore, we also examined how the printing direction affects the properties. Our findings indicate that the mechanical strength and corrosion resistance of the printed parts are significantly influenced by the additive manufacturing process parameters, thereby highlighting the importance of optimizing these conditions for improved material performance. This research not only emphasizes the viability of AM in producing high-quality stainless steel components but also provides insights into the intricate relationship between the manufacturing process and the resultant material characteristics.

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Cite This Work

@article{b55ba192-2f0c-459f-b26a-bec736538c50,
  title={Effects of Additive Manufacturing on the Mechanical and Corrosion Properties of Austenic Stainless Steel},
  author={János Endre MAróTi and Dávid Miklós KEMény},
  year={2019},
  language={en}
}
TY  - JOUR
TI  - Effects of Additive Manufacturing on the Mechanical and Corrosion Properties of Austenic Stainless Steel
AU  - János Endre MAróTi
AU  - Dávid Miklós KEMény
PY  - 2019
LA  - en
ER  -

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