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Role of Rare Earth Oxide Reinforcements in Enhancing the Mechanical, Damping and Ignition Resistance of Magnesium

机译:稀土氧化物增强材料在提高镁合金机械、阻尼和抗燃性中的作用

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Magnesium based nanocomposites, on account of their excellent dimensional stability coupled with mechanical integrity, have provided the much-needed impetus for utilization in both aerospace-related and automobile-related applications. However, the perceived easy ignition and flammability of magnesium alloys create a detrimental safety feature that hinders the aerospace application opportunities. Incorporation of rare earth metal oxides into magnesium matrix can induce 'reactive element effect' (REE), due to their strong rare earth-oxygen interactions. Along with enhancing the protective characteristics of oxides on many metals and alloys, the addition of such rare earth oxides also helps in realizing a refined microstructure and good strength-ductility combination in the composites. This manuscript presents the mechanical properties, damping and ignition resistance characteristics of the new and improved composite materials engineered by reinforcing magnesium with rare earth oxide nanoparticle. Rationale for the observed properties is discussed while concurrently establishing the relationship between microstructure of the engineered composites and resultant mechanical properties.
机译:镁基纳米复合材料由于其优异的尺寸稳定性和机械完整性,为航空航天和汽车相关应用提供了迫切需要的动力。然而,镁合金的易着火性和易燃性造成了有害的安全特性,阻碍了航空航天应用的机会。由于稀土金属氧化物与镁基体之间存在强烈的稀土-氧相互作用,将其掺入镁基体中可诱发“反应元素效应”(REE)。除了增强氧化物对许多金属和合金的保护特性外,添加此类稀土氧化物还有助于在复合材料中实现细化的微观结构和良好的强度-塑性组合。这种纳米氧化物增强了材料的机械性能和抗点火性能。讨论了观察到的性能的基本原理,同时建立了工程复合材料的微观结构与最终机械性能之间的关系。

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