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首页> 外文期刊>Journal of Composite Materials >Comparative analysis of particle size on the mechanical and metallurgical characteristics of Al2O3-reinforced sintered and extruded AA2014 nano-hybrid composite
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Comparative analysis of particle size on the mechanical and metallurgical characteristics of Al2O3-reinforced sintered and extruded AA2014 nano-hybrid composite

机译:粒径对Al2O3加固烧结和挤出AA2014纳米杂交复合材料机械和冶金特性的比较分析

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摘要

Aluminum metal matrix composites (AMCs) are having exotic properties which attract the research community to develop new nano-composite material. The aim of the work is to compare the effect of various weight percentage of alumina particle (micro-size (20-50 mu m) and nano-size (50-80 nm)) in the AA2014 hybrid nano-composite by sintering and hot extrusion processes. The prepared composites are subjected to mechanical and metallurgical characterization. A comparative analysis is performed by varying the weight percentages (1-10%) of alumina-reinforced particles. The AA2014 hybrid composite sample-3 (S3) is showing a substantial enhancement in the mechanical characteristics (Ys-255 MPa and UTS-265 MPa) than the other samples. The interfacial bonding between the AA2014 and alumina has observed minimum micro-hardness magnitude (98 VHN) in the sintered samples. The compressive strength of extruded composite S3 (327 MPa) is 1.157 times as high as the sintered sample. The agglomeration and segregation of Al2O3-reinforced nano-particles is identified in the AA2014 hybrid composite by using SEM analysis. The conical and equiaxed dimple failure in the AA2014 matrix and the circular cavities are observed through fractography analysis.
机译:铝金属基质复合材料(AMCs)具有异乎寻常的性质,吸引研究群落开发新的纳米复合材料。该工作的目的是通过烧结和热量比较AA2014杂交纳米复合材料中各种重量百分比的氧化铝颗粒(微尺寸(20-50μm)和纳米尺寸(50-80nm))的效果挤出过程。制备的复合材料经受机械和冶金表征。通过改变重量百分比(1-10%)的氧化铝增强颗粒来进行比较分析。 AA2014杂交复合样品-3(S3)显示出比其他样品的机械特性(YS-255MPa和UTS-265MPa)的显着增强。 AA2014和氧化铝之间的界面键合在烧结样品中观察到最小微硬度幅度(98 VHN)。挤出复合S3(327MPa)的抗压强度为烧结样品的1.157倍。使用SEM分析,在AA2014杂合复合材料中鉴定AL2O3增强纳米颗粒的凝聚和分离。通过Fractography分析观察到AA2014矩阵和圆形腔中的锥形和等式浊度故障。

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