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Understanding the high temperature oxidation and ignition behaviour of two-phase Mg-Nd alloys and a comparison to single phase Mg-Nd

机译:了解两相Mg-Nd合金的高温氧化和着火行为以及与单相Mg-Nd的比较

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The oxidation kinetics and the mechanism of two-phase Mg-Nd alloys were investigated via isothermal heating experiments conducted in dry air at 500 degrees C for 12h. The oxidation kinetic curves reveal improved oxidation resistance on neodymium (Nd)-containing alloys compared to pure Mg. A lower mass gain was detected at 2.5-%Nd than at 6-Nd%, which was related to the lower amount of intermetallic phase on the alloy surface. The intermetallic phase has a significant effect on the oxide growth stage. Nd2O3 formation on the intermetallic phases creates diffusion paths for oxygen to the metal/oxide interface, affecting both the oxidation kinetics and the oxidation resistance of the alloys. The formation of a Nd-depleted region at the subsurface due to extensive Nd oxidation at the oxide/intermetallic interface lowers the protective ability of the oxide scale. As increasing the Nd content of binary Mg-Nd alloys above 0.5wt% shifts the alloys from single-phase region to two-phase region, it adversely affects the ignition resistance.
机译:通过在干燥空气中于500摄氏度下进行12h的等温加热实验研究了两相Mg-Nd合金的氧化动力学和机理。氧化动力学曲线显示,与纯Mg相比,含钕(Nd)的合金具有更高的抗氧化性。在2.5%Nd处检测到的质量增益比在6-Nd%处检测到的质量增益低,这与合金表面上较低的金属间相含量有关。金属间相对氧化物生长阶段具有显着影响。在金属间相上形成的Nd2O3形成了氧扩散至金属/氧化物界面的扩散路径,从而影响了合金的氧化动力学和抗氧化性。由于在氧化物/金属间界面上的大量Nd氧化而在亚表面形成Nd耗尽区,降低了氧化皮的保护能力。当将二元Mg-Nd合金的Nd含量提高到0.5wt%以上时,会使合金从单相区域转移到两相区域,从而对耐燃性产生不利影响。

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