新型变形镁合金的开发:添加合金元素提高其耐蚀性

Guy Ben Hamu, Polina Metalnikov
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摘要

镁合金因其低密度和高强度/重量比而成为交通运输行业中极具吸引力的结构材料。然而,镁合金的高腐蚀敏感性限制了其应用。因此,开发具有良好机械性能和优异耐腐蚀性能的新型镁合金日益受到人们的关注。变形镁合金的生产提高了镁合金的机械性能,而添加合金元素可能会改善镁合金的腐蚀性能。本文研究了铝、锌、锡和钙的加入对新型变形镁合金腐蚀性能的影响。总体而言,合金元素的加入导致析出具有阴极行为的第二相颗粒(相对于Mg基体)。这增强了微电效应,降低了短时间浸泡的耐蚀性。然而,在较长的浸泡时间内,氧化层的钝化特性对提高合金的耐蚀性起着显著的作用。我们将详细讨论每种元素对氧化层的贡献。一般情况下,合金元素的用量应足以稳定腐蚀产物层;还要尽可能的低,以减少微电效应。
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Development of New Wrought Mg Alloys: Improving the Corrosion Resistance by Addition of Alloying Elements
Magnesium (Mg) alloys constitute an attractive structural material for transportation industries, due to their low density and high strength/weight ratio. However, high susceptibility to corrosion of Mg alloys limits their use. Therefore, there is a growing interest for development of new Mg alloys with good mechanical properties and superior corrosion resistance. Production of wrought Mg alloys results in enhancement of mechanical properties, whereas addition of alloying elements may result in improved corrosion behavior. In this study we distinguish the role of aluminum, zinc, tin and calcium additions on the corrosion performance of new wrought Mg alloys. Overall, addition of alloying elements resulted in precipitation of second phase particles with cathodic behavior (relatively to Mg matrix). This enhanced the micro-galvanic effects and the corrosion resistance in short periods of immersion was deteriorated. However, in longer periods of immersion the passive characteristics of the oxide layer played a significant role in improving the alloys' corrosion resistance. The contribution of each element to the oxide layer will be discussed in detail. In general, the quantities of alloying element should be sufficient to stabilize the corrosion products layer; yet as low as possible, in order to reduce the micro-galvanic effects.
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