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Please use this identifier to cite or link to this item: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50813

Title: Effect of Zr-content on the oxidation and phase transformation of Zr-base amorphous alloys in air
Authors: H.H. Hsieh
W. Kai
R.T. Huang
M.X. Pan
T.G. Niehd
Contributors: 國立臺灣海洋大學:材料工程所
Keywords: B. Oxidation
B. Phase transformation
B. Glasses, metallic
Date: 2004-04
Issue Date: 2018-10-26T01:25:23Z
Publisher: Intermetallics
Abstract: Abstract: The oxidation and phase transformation of three Zr-base amorphous alloys, Zr–20Cu–12Ni–10Al–5Ti (Zr53), Zr–30Cu–10Al–5Ni (Zr55), and Zr–15Cu–10Al–10Ni (Zr65), were studied over the temperature range of 300–500 °C in dry air. Oxidation kinetics of these alloys generally followed a parabolic rate law at T>350 °C, but linear kinetics was obeyed at 300–350 °C. It was found that Zr65 was the most oxidation-resistant alloy among the three alloys studied. Scales formed on the alloys during oxidation consisted of mainly tetragonal- and monoclinic-ZrO2 (t- and m-ZrO2), and minor CuO and NiO (only detected in Zr53). The amount of m-ZrO2 formed strongly depends upon the alloy composition, exposure time, and temperature. TEM results showed that a significant amount of nano-grained Zr2Cu polycrystals formed beneath the amorphous oxide-scale in Zr53, indicating phase transformation has taken place. By contrast, Zr55 and Zr65 amorphous substrates transformed into Zr2Cu and ZrAl after oxidation.
Relation: 12(10-11) pp.1089-1096
URI: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/50813
Appears in Collections:[材料工程研究所] 期刊論文

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