首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of super-high pressure on microstructures, nano-mechanical behaviors and corrosion properties of Mg-Al alloys
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Effects of super-high pressure on microstructures, nano-mechanical behaviors and corrosion properties of Mg-Al alloys

机译:超高压对Mg-Al合金微观结构,纳米力学行为和腐蚀性能的影响

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摘要

The aim of this study was to investigate the effects of super-high pressure solidification (2 and 4 GPa) on microstructures, nano-mechanical behaviors and corrosion properties of Mg-30 wt.% Al alloy. The lattice parameter (a) of Mg matrix is decreased and the c/a value is increased owing to the increased Al concentration in Mg matrix. In contrast to the as-cast sample or other super-high pressure samples, the Mg matrix is more homogeneous and the net-like eutectic phase becomes finer after super-high pressure solidification at 800 °C under 2 GPa. In addition, the area fraction of eutectic phase is reduced with increasing the exterior pressure and temperature during the solidification, whilst the Al concentration in both the Mg matrix and the eutectic phase are enhanced. The nanoindentation results indicate that both the hardness and Young's modulus are sensitive to the solidification pressure and temperature. The Tafel curves and electrochemical impedance spectroscopes results reveal the corrosion properties of the sample at 800 °C under 2 GPa are remarkably improved due to the formation of a compact and continuous oxide layer.
机译:本研究的目的是研究超高压凝固(2和4 GPA)对Mg-30重量%的微观结构,纳米机械行为和腐蚀性的影响。 Mg基质的晶格参数(A)降低,并且由于Mg基质中的Al浓度增加而增加C / A值。与AS浇铸样品或其他超高压样品相比,Mg基质更均匀,并且在800℃下在2GPa下的800℃下的超高压凝固后,网状共晶相变细。另外,通过增加凝固过程中的外部压力和温度,减少了共晶相的面积分数,同时增强了Mg基质和共晶相的Al浓度。纳米狭窄结果表明硬度和杨氏模量均对凝固压力和温度敏感。 Tafel曲线和电化学阻抗谱结果结果揭示了由于形成紧凑且连续的氧化物层的2GPa下的800℃下的样品的腐蚀性。

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