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- W3081646399 abstract "In order to investigate the applicability of a direct and complete recycling method to commercial-scale ingot production, 3 tons of a Ni-base single crystalNi-base single crystal superalloys (SC) superalloy, TMS-1700(MGA1700) was melted and desulfurized by CaO during the melting. Sulfur content in the molten alloy was reduced from about 23 ppm to about 2 ppm within 60 min after adding granular CaO to the molten alloy. Microstructural observations using SEM and EPMA showed no presence of inclusions caused by CaO addition. CreepCreep rupture lives of the recycleRecycle-simulated TMS-1700 were equivalent to that of the standard TMS-1700 under the conditions from 800 °C/735 MPa to 1100 °C/137 MPa. The recycleRecycle-simulated TMS-1700 exhibits even better oxidation resistanceOxidation resistance compared with the standard TMS-1700, which has better oxidation resistanceOxidation resistance than CMSX-4TM. Thus, it became clear that the CaO desulfurizationCaO desulfurization improves the oxidation resistanceOxidation resistance of Ni-base superalloysNi-base single crystal superalloys. High cycle fatigue (HCF) properties of the standard and the recycleRecycle-simulated TMS-1700 were equivalent. From the results described above, it has been suggested that the application of direct and complete recycling method to commercial-scale ingot production is feasible." @default.
- W3081646399 created "2020-09-08" @default.
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- W3081646399 date "2020-01-01" @default.
- W3081646399 modified "2023-10-16" @default.
- W3081646399 title "3 Ton Melting with CaO Desulfurization of Ni-Base Single Crystal Superalloy TMS-1700, Simulating a Recycling of Used Turbine Blades" @default.
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- W3081646399 doi "https://doi.org/10.1007/978-3-030-51834-9_39" @default.
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