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논문 기본 정보

자료유형
학술저널
저자정보
Berthod, Patrice (Institut Jean Lamour [UMR CNRS 7198], CampusArtem, University of Lorraine) Ritouet-Leglise, Melissa (Institut Jean Lamour [UMR CNRS 7198], CampusArtem, University of Lorraine)
저널정보
테크노프레스 Advances in materials research : AMR Advances in materials research : AMR 제7권 제1호
발행연도
2018.1
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17 - 28 (12page)

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Niobium is a candidate base for new alloys devoted to applications at especially elevated temperatures. Elaborating and shaping niobium-based alloys by conventional foundry may lead to mechanically interesting microstructures. In this work a series of charges constituted of pure elements were subjected to high frequency induction melting in cold crucible to try obtaining cast highly refractory Nb-xCr and Nb-xCr-0.4 wt.%Calloys(x=27, 34 and 37 wt.%). Melting and solidification were successfully achieved. The as-cast microstructures of the obtained alloys were characterized by electron microscopy and X-ray diffraction and their hardness were specified by Vickers macro-indentation. The obtained as-cast microstructures are composed of a body centered cubic (bcc) niobium dendritic matrix and of an interdendritic eutectic compound involving the bcc Nb phase and a $NbCr_2$ Laves phase. The obtained alloys are hard to cut and particularly brittle at room temperature. Hardness is of a high level (higher than 600Hv) and is directly driven by the chromium content or the amount of {bcc Nb - $NbCr_2$} eutectic compound. Adding 0.4 wt.% of carbon did not lead to carbides but tends to increase hardness.

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