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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The effect of thermal treatment on the corrosion properties of vapor deposited magnesium alloyed with yttrium, aluminum, titanium, and misch metal
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The effect of thermal treatment on the corrosion properties of vapor deposited magnesium alloyed with yttrium, aluminum, titanium, and misch metal

机译:热处理对与钇,铝,钛和稀土金属合金化的气相沉积镁合金腐蚀性能的影响

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摘要

The corrosion susceptibility of magnesium often limits the use of this important metal. Efforts to improve the corrosion resistance of magnesium through alloying are hindered by the limited solid solubility of most metals in magnesium. Moreover, the relatively high melting temperature of most of the less-common metals makes conventional alloying difficult. Vapor deposition has been used in this research to alloy magnesium with nonequilibrium concentrations of normally incompatible metals in an attempt to improve corrosion performance. Aluminum, titanium, yttrium, and misch metal were chosen as candidates likely to impart passivity on vapor deposited magnesium alloys. Although all of these metals afford some degree of corrosion resistance to magnesium, behavior is highly dependent on the thermal history of the alloys. Thermal effects, both during and after alloy deposition, alter the stress state of the alloys, precipitation of second phases, and the mechanical stability of the passive film. An optimal thermal treatment has been developed to maximize the corrosion resistance of vapor deposited magnesium-yttrium-titanium alloys.
机译:镁的腐蚀敏感性常常限制了这种重要金属的使用。大多数金属在镁中有限的固溶性阻碍了通过合金化改善镁耐腐蚀性的努力。此外,大多数不常见的金属的相对较高的熔化温度使常规合金化变得困难。在这项研究中,已采用气相沉积法来使镁与非平衡浓度的通常不相容的金属合金化,以改善腐蚀性能。选择铝,钛,钇和稀土金属作为可能在气相沉积镁合金上赋予钝化性的候选材料。尽管所有这些金属都对镁具有一定程度的耐腐蚀性,但是其行为高度依赖于合金的热历史。在合金沉积期间和之后的热效应都会改变合金的应力状态,第二相的沉淀以及钝化膜的机械稳定性。已经开发了最佳热处理,以使气相沉积的镁-钇-钛合金的耐腐蚀性最大化。

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