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首页> 外文期刊>Current Nanomaterials >Using CaO Nanoparticles to Improve Mechanical and Ignition Response of Magnesium
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Using CaO Nanoparticles to Improve Mechanical and Ignition Response of Magnesium

机译:使用CaO纳米粒子改善镁的机械和点火响应

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Background: Owing to their lightweight and excellent specific mechanical properties, the utilization of magnesium-based materials promises the desired weight/energy savings in demanding applications. In the recent years, the addition of ceramic reinforcements to magnesium is being extensively researched due to their potential to replace the commercial alloys for structural applications. Method: One of the major limitations of Mg-based materials (alloys and nanocomposites) targeting aerospace/ high-temperature applications is its poor ignition resistance. In this regard, an attempt is made in this study to develop and characterize the properties of a new Mg / 0.5, T, 1.5,2 CaO nanocomposite system in terms of the ignition resistance. Further, microstructural and mechanical properties are also studied to understand the overall effect of CaO addition. The Mg/CaO nanocomposites required for this study were developed using disintegrated melt deposition method followed by hot extrusion. Results: Microstructural investigation showed significant grain refinement and the presence of Mg2Ca phase along with CaO particles. Evaluation of mechanical properties revealed significant improvements as compared to pure magnesium. Evaluation of ignition properties revealed excellent improvements in ignition temperature relative to magnesium as well as novel and commercial magnesium-based alloys. The result of this investigation may be useful in further studies in the development of Mg/CaO nanocomposites for future commercial utilization, especially in the aviation, automotive and electronics industries.
机译:背景:由于它们的轻质和优异的机械性能,基于镁的材料的利用承诺在苛刻的应用中提供所需的重量/节能。近年来,由于它们的潜力替代用于结构应用的商业合金,因此广泛地研究了对镁的陶瓷增强物。方法:靶向航空航天/高温应用的基于Mg基材料(合金和纳米复合材料)的主要限制之一是其点火性差。在这方面,在该研究中尝试开发和表征新的Mg / 0.5,T,1.5,2 CaO纳米复合体系的性质,以点火抗性。此外,还研究了微观结构和机械性能,以了解CaO添加的整体效果。该研究所需的Mg / CaO纳米复合材料是使用崩解的熔融沉积方法开发,然后进行热挤出。结果:微观结构研究显示出显着的晶粒细化和Mg2Ca相和CaO颗粒的存在。与纯镁相比,机械性能的评价显示出显着的改善。点火性能评价揭示了相对于镁的点火温度以及新颖的和商业镁基合金的优异改善。该研究的结果对于进一步研究Mg / Cao纳米复合材料的进一步研究,用于将来的商业利用,特别是在航空,汽车和电子行业。

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