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首页> 外文期刊>JOURNAL OF METALLURGY AND MATERIALS SCIENCE >Development of novel Al-alloy (Al-5Mg)/10Wt.%TiB_2 metal matrix composites by in-situ reaction synthesis
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Development of novel Al-alloy (Al-5Mg)/10Wt.%TiB_2 metal matrix composites by in-situ reaction synthesis

机译:原位反应合成新型铝合金(Al-5Mg)/10Wt.%TiB_2金属基复合材料

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摘要

There has been a constant drive for replacing monolithic aluminium alloys by aluminium based metal matrix composites (MMCs) in many industrial applications where high stiffness and high strength to weight ratio are required. The present paper describes a cost effective route to produce Al alloy-10 wt % TiB_2 metal matrix composites by in-situ molten flux assisted reaction synthesis.Aluminium alloys are widely used for commercial applications in transportations, automobiles, construction and similar industrial applications. Now a days main focus is given to aluminium alloy as a matrix material due to its unique combination of good corrosion resistance, low density, superior mechanical properties, good vibration damping, higher wear resistance due to which alloy finds extensive applications in naval applications. With TiB_2 as particulate addition in Al-Alloy (Al-5Mg) matrix properties of alloy can greatly be improved.In-Situ Al-Alloy (Al-5Mg) composite material prepared by reaction synthesis was cast into thick as well as thin section industrial components by gravity and pressure die casting route. Subsequent structure-property evaluation studies indicated sub-micron size reinforcement of in-situ formed TiB_2 particles with improved physical and mechanical properties as compared to conventional Al alloy & its composites. From industrial point of view, the Al-TiB_2 composite has an advantage of easy recycle ability over conventional Al-alloy composites.
机译:在许多需要高刚度和高强度重量比的工业应用中,一直存在以铝基金属基复合材料(MMC)代替整体式铝合金的驱动力。本文描述了一种通过原位熔融助熔反应合成生产10wt%TiB_2金属基铝合金复合材料的经济有效途径。铝合金广泛用于交通运输,汽车,建筑和类似工业应用中的商业应用。由于铝合金具有良好的耐腐蚀性,低密度,优异的机械性能,良好的减振性,较高的耐​​磨性,因此如今已成为铝合金作为基体材料的主要关注点,因此铝合金在海军应用中得到了广泛的应用。以TiB_2作为颗粒添加到铝合金(Al-5Mg)的基体中可以大大提高合金的性能。通过反应合成制备的原位铝合金(Al-5Mg)复合材料被铸成厚壁和薄壁工业组件通过重力和压力压铸路线。随后的结构性能评估研究表明,与传统的铝合金及其复合材料相比,原位形成的TiB_2颗粒具有亚微米尺寸的增强,具有改善的物理和机械性能。从工业角度来看,Al-TiB_2复合材料比常规的铝合金复合材料具有易于回收利用的优点。

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