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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/104300


    Title: The oxidation behavior of a novel Ni-free Zr-Cu-based bulk metallic glass composite in the supercooled liquid and crystallization states
    Authors: 鄭憲清;Wang, Huei-Sen;Li, Wei-Hau;Wu, Mei-Hui;Chen, Hou-Guang;Shian-Ching Jang, Jason;Lin, Dong-Yih
    Contributors: 工學院材料科學與工程研究所
    Keywords: A. Metallic glasses;Amorphous materials;AMORPHOUS STRUCTURE;B. Oxidation;Channels;COMPOSITES;COPPER OXIDE;CRACKS;Crystallization;D. Microstructure;F. Microscopy, various;GLASSES;Metallic glasses;Nickel;Oxidation;Tantalum
    Date: 2014-01-01
    Issue Date: 2026-04-23 11:47:37 (UTC+8)
    Publisher: Elsevier Ltd.;Elsevier Ltd
    Abstract: 摘要: The oxidation behavior of a novel Ni-free (Zr48Cu32Al8Ag8,Ta4)Si0.75 bulk metallic glass composite (BMG-C) in dry air in the supercooled liquid state (SLS at 430 °C and 480 °C) and the crystallization state (CS at 520 °C and 560 °C) for 100 h were studied herein. Test results showed that the oxidation kinetics of the BMG-C in the SLS and CS followed a multi-stage oxidation rate law. The scales forming in both the SLS and CS consist of t-ZrO2, and m-ZrO2, CuO and Ag. In the CS, additional Al2O3 was observed. In the substrate area, Cu10Zr7 crystalline likely formed in the amorphous substrate in the SLS. In the CS, more crystallization phases were found in the substrate, including additional CuZr2 observed at temperatures ≥520 °C; AlCu2Zr was observed at 560 °C. The Ta-reinforced phase in the BMG-C was more likely to react with Si in the scales forming Ta2Si at temperatures ≥480 °C, which resulted in cracks in the Ta. Furthermore, channels between Ta precipitates and the matrix might exist, facilitating oxygen diffusivity. As the oxidation temperature (e.g., CS) and test duration were increased, the effects of the cracks and the channels became more significant and were responsible for the fast-growth oxidation in the final stage of the test. •Oxidation behaviors of a novel BMG-C were tested in SLS and CS.•The oxidation kinetics and scale formed in the BMG-C were then investigated.•RP, Ta, is likely to react with Si forming in Ta2Si resulted in cracks.•Channels between Ta and matrix may exist, facilitating oxygen diffusivity.•Cracks and the channels responsible for the fast-growth oxidation rate.
    出版者: Elsevier Ltd
    出版日期: 2014-10-01
    出處: Intermetallics, 2014-10, Vol.53, p.34-39
    版權: 2014 Elsevier Ltd
    識別號: ISSN: 0966-9795
    識別號: DOI: 10.1016/j.intermet.2014.04.014
    Appears in Collections:[Institute of Materials Science and Engineering] journal & Dissertation

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