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Development of rare-earth oxides based hybrid AMCs reinforced with SiC/Al 2O 3: mechanical & metallurgical characterization

机译:SiC / Al 2 O 3 增强的基于稀土氧化物的混合AMC的开发:机械和冶金表征

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The paper presents the study on the mechanical and microstructural behaviour of aluminium matrix hybrid composites of Al-6061 alloy with Al2O3, SiC and CeO2as reinforcement particles processed through stir casting route. For the experimental investigations, hybrid composites were fabricated by varying weight percentages of 5,10 and 15wt.-% of (SiC+Al2O3) mixture and weight percentage of 0.5, 1.5 and 2.5wt.-% of CeO2keeping total wt.-% of reinforcement less than 30wt.-%. Mechanical properties like ultimate tensile strength, micro and macro hardness and percentage elongation were examined on the aluminium matrix hybrid composites at room temperature. The microstructure analysis was done using SEM, XRD and EDS techniques. Micro hardness value of the base alloy was increased by 17.02% on addition of 2.5wt.-% of CeO2as rare earth element along with (Al2O3+SiC) mixture. In comparison to non-rare earth element (Alloy+15wt.-% (Al2O3+SiC) mixture), the hardness increased by only 13.70%. Rockwell hardness of the base alloy increased by 33.80% on successful incorporation of rare earth element. The SEM microstructure analysis shows a very significant refinement of the composites after addition of rare earth particles. XRD and EDS analysis shows very good results in terms of fabrication of hybrid composite particles.
机译:本文介绍了以Al2O3,SiC和CeO2为增强颗粒的Al-6061合金铝基杂化复合材料的力学性能和微观组织行为的研究。为了进行实验研究,通过改变5,10和15wt。%(SiC + Al2O3)混合物的重量百分比以及0.5、1.5和2.5wt。%CeO2的重量百分比保持总重量增强小于30wt .-%。在室温下对铝基杂化复合材料检查了机械性能,如极限拉伸强度,微观和宏观硬度以及延伸率百分比。使用SEM,XRD和EDS技术进行了微结构分析。通过添加2.5wt。%的CeO2作为稀土元素以及(Al2O3 + SiC)混合物,基础合金的显微硬度值提高了17.02%。与非稀土元素(合金+ 15wt .-%(Al2O3 + SiC)混合物)相比,硬度仅增加了13.70%。成功掺入稀土元素后,基础合金的洛氏硬度提高了33.80%。 SEM的微观结构分析表明,添加稀土颗粒后复合材料的细化效果非常显着。 XRD和EDS分析在杂化复合颗粒的制备方面显示出非常好的结果。

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