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Effect of post fabrication aging treatment on the microstructure, crystallographic texture and elevated temperature mechanical properties of IN718 alloy fabricated by selective laser melting

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2022

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Elsevier Science Sa

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Ortak Dersler Bölümü
Ortak Dersler Bölümü’nün amacı öğrencilerimizin analitik düşünme yeteneğini geliştirmek, bazı doğa kanunlarını anlayabilmelerini sağlamak, eğitim, bilim, sanat, tarih ve edebiyat gibi alanlarda öğrencilerimizin kendilerini geliştirmesine imkan sağlamaktır.

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Abstract

The effect of building direction and post fabrication aging treatment on the microstructure, crystallographic texture and high temperature mechanical properties of Inconel 718 (IN718) alloy fabricated by selective laser melting (SLM) method was investigated. After aging, arc-shaped structures seen in as-fabricated samples dis-appeared and converted into a mixture of columnar and equiaxed grains. Nano-sized gamma '' and/or gamma' precipitates were formed upon aging; however, MC type carbides and Laves phase encountered in as-fabricated samples were not dissolved completely after aging. Moreover, aging did not alter the texture ((001)//building direction (BD)) of as-fabricated samples. Mechanical properties of the alloys under tension were influenced by the build direction, aging time and test temperature. As-fabricated samples produced in vertical direction exhibited higher room temperature strengths with lower ductility due to orientation of overlapped prior melt pools. Room temperature tensile test results revealed that peak aging caused a significant improvement in ultimate tensile strength (UTS), from 1066.5 MPa and 998.4 MPa to 1408.5 MPa and 1330.4 MPa whereas elongation values decreased from 27.5% and 32.2% to 19.6% and 23.7% in vertically and horizontally built samples, respectively. Peak-aged samples (aged at 700 degrees C for 8 h) tested at 600 degrees C displayed serrated regions in their stress-strain curves due to dynamic strain aging (DSA). Although strength values of the samples displayed an expected decrease by temperature, ductility of the samples reduced to minimum at temperatures around 700-800 degrees C, which was attributed to intermediate temperature embrittlement.

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Davut, Kemal/0000-0002-9860-881X; Dericioglu, Arcan F/0000-0003-3797-117X; Bilgin, Guney Mert/0000-0002-8909-0633; Ozer, Seren/0000-0002-2001-0893

Keywords

Additive Manufacturing, Selective Laser Melting, Inconel 718 Alloy, Mechanical Properties, Dynamic Strain Aging, Texture

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Ozer, Seren;...et.al. (2022). "Effect of post fabrication aging treatment on the microstructure, crystallographic texture and elevated temperature mechanical properties of IN718 alloy fabricated by selective laser melting", Journal of Materials Processing Technology, Vol.306.

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306

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