4.3 Article Proceedings Paper

Changes in Microstructure of Biomedical Co-Cr-Mo Alloys during Aging at 973 to 1373 K

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MATERIALS TRANSACTIONS
卷 57, 期 12, 页码 2048-2053

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JAPAN INST METALS
DOI: 10.2320/matertrans.MI201507

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cobalt-chromium alloy; precipitate; hardness; aging; microstructure; biomaterials

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Changes in the microstructure and hardness of biomedical Co-Cr-Mo forged alloys (Co-27Cr-6Mo-0.77Si-0.64Mn-0.17N-0.06C (mass%)) during aging were investigated with a focus on precipitation. After solution treatment at 1523 K for 1.8 ks, the alloys were subjected to aging at temperatures between 973 and 1373 K for up to 86.4 ks. eta-phase (M6X-M12X type), M23X6-type and pi-phase (A(2)T(3)X type) precipitates were detected after aging. The formation of pi-phase precipitates was detected in alloys aged between 1023 and 1123 K for holding times >= 21.6 ks, with a nose temperature between 1073 and 1123 K. The presence of Tr-phase precipitates in the aged Co-Cr-Mo alloy is reported for the first time; N contained within the alloy is believed to contribute to formation of the yr-phase. The formation of a hexagonal-close-packed Co-based metallic phase (epsilon-phase) was observed between 1023 and 1123 K. The Vickers hardness increased in alloys aged at 1023 and 1073 K. This increase in hardness is attributed to the presence Of pi-phase and epsilon-phase and their wide-area precipitation.

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