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- W4387332427 abstract "Abstract Additive manufacturing (AM) has been increasingly used for gas turbine components over the last decade. Many different components can successfully be designed, printed and used in the gas turbine. However, there still exist questions on the use of AM components in hot-section areas. These components are typically fabricated from nickel-base superalloys that are known to have superior mechanical properties at elevated temperatures (e.g. creep and fatigue). Research over the last decade has been primarily focused on the printability of nickel-base superalloys and there still exists a gap in understanding the high temperature processing-structure-properties-performance relationships of these alloy systems. This study evaluates the effect of processing methods, such as laser-based powder bed fusion (LBPBF) and electron beam powder bed fusion (EBPBF), on resulting microstructure and time dependent mechanical properties of a nickel-base superalloy (ABD®900). The results show there are several methods which can be used to improve the performance of components built using AM. The creep testing results for ABD900-AM clearly show an improvement in properties (rupture life and ductility) at all test conditions compared to testing in the prior AM alloy of the same class. These findings provide directions for future studies to advance the overall state of gas turbine technology by enabling ABD®900-AM material and other AM alloys to be used in more innovative hot-section components." @default.
- W4387332427 created "2023-10-05" @default.
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- W4387332427 date "2023-10-01" @default.
- W4387332427 modified "2023-10-14" @default.
- W4387332427 title "Options For Improving Performance Of Additively Manufactured Nickel-Base Superalloys For Gas Turbine Applications" @default.
- W4387332427 doi "https://doi.org/10.1115/1.4063631" @default.
- W4387332427 hasPublicationYear "2023" @default.
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