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High Temperature Oxidation Behavior of Ignition-Proof Mg-Y-Ce Alloys
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    Abstract:

    Joint addition of Y and Ce results in excellent ignition-proof effect and realizes no-protection melting in air for magnesium alloys. AES and XRD surface analyses show that an oxidation film mainly composed of Y2O3 was formed on the surface when the Mg-Y-Ce ignition-proof alloys were exposed in air at high temperature. When the Mg-Y-Ce alloys were oxidized at 773, 873 and 973 K in dry air, the oxidation dynamics curves followed the cubic law. Base on the oxidation thermodynamics, the selective oxidation mechanism for Mg-Y-Ce alloys at high temperature was analyzed. The semiconductor characteristics of Y2O3 film and its proof effect on magnesium alloy oxidation were discussed electrochemically

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[Guan Ming, Hao Weixin, Fan Jianfeng. High Temperature Oxidation Behavior of Ignition-Proof Mg-Y-Ce Alloys[J]. Rare Metal Materials and Engineering,2010,39(8):1375~1379.]
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  • Received:August 26,2009
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