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Experimental investigation on newly developed ultrafine-grained aluminium based nano-composites with improved mechanical properties

机译:新开发的具有改善的机械性能的超细晶粒铝基纳米复合材料的实验研究

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The present work describes the structural evolution associated with grain refinement and superior mechanical properties by the addition of nano-size Al_2O_3 and Y_2O_3 particulates into monolithic A16063 alloy matrix. Mechanical milling (MM) and mechanicsl alloying (MA) was employed to obtain nanostructured A16063 alloy matrix with uniform distribution of ceramic reinforcement particulates. The milled-compacted-sintered samples were hot extruded to further densify the nano-composites and make the distribution of particles uniform in the material. The final hot extruded samples were examined by high resolution-scanning electron microscopy (HR-SEM), field emission-scanning electron microscopy (FESEM), X-ray diffraction (XRD) analysis and were mechanically tested for hardness and mechanical strength. Detailed (transmission electron microscopy) TEM studies were carried out for hybrid reinforced nano-composites which exhibit superior properties over monolithic A16063 alloy and singular reinforced nano-composites. Results show that the 0.2% yield strength (0.2% YS), ultimate tensile strength (UTS), work of fracture (WOF) were improved over ttie unreinforced monolithic A16063 alloy and failure strain was decreased in reinforced nano-composites.
机译:本工作描述了通过将纳米尺寸的Al_2O_3和Y_2O_3颗粒添加到整体式A16063合金基体中与晶粒细化和优异的机械性能相关的结构演变。机械研磨(MM)和机械合金化(MA)用于获得具有均匀分布的陶瓷增强颗粒的纳米结构A16063合金基体。将经碾压的烧结样品进行热挤压,以进一步致密化纳米复合材料,并使颗粒在材料中的分布均匀。通过高分辨率扫描电子显微镜(HR-SEM),场发射扫描电子显微镜(FESEM),X射线衍射(XRD)分析检查了最终的热挤压样品,并对其进行了硬度和机械强度的机械测试。对混合增强纳米复合材料进行了详细的(透射电子显微镜)TEM研究,这些复合材料表现出优于整体式A16063合金和奇异增强纳米复合材料的性能。结果表明,与未增强的整体式A16063合金相比,增强型纳米复合材料的0.2%屈服强度(0.2%YS),极限抗拉强度(UTS),断裂功(WOF)有所提高,并且破坏应变降低。

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