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- W2012308879 abstract "A bulk multi-phase ZrCuAlNiO alloy consisting of a Zr 2 Cu phase, an austenitic ZrCu (B2) phase and two types of martensitic ZrCu phases were prepared by copper-mold casting. Near the surface, equiaxed nano-scale ZrCu (B2) grains form, without undergoing a martensitic transformation (MT). Towards the center, the microstructure is characterized by the transformation of an austenite to martensite, which changes from the martensite base structure (untwinned) to the martensite superstructure (twinned) with the position closer to the center. The release of crystallization latent heat influences the local cooling rate in the sample. The different cooling conditions determine the different MTs. A Fourier's heat conduction model was employed to calculate the cooling rate in the copper-mold casting, and the relationship between the formation of the different martensite structures and the cooling rates was established and discussed." @default.
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- W2012308879 date "2009-05-01" @default.
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- W2012308879 title "The correlation between the formation of different martensitic structures and the cooling rates in ZrCuAlNiO alloy during solidification" @default.
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- W2012308879 doi "https://doi.org/10.1016/j.jallcom.2008.10.167" @default.
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