Investigation on Microstructure and Tensile Fractography of RE Oxides (CeO2/Y2O3) Reinforced AZ91D Magnesium Matrix Composites

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Santhosh Gotagunaki, V. S. Mudakappanavar, R. Suresh
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引用次数: 0

Abstract

The current work aims to investigate the mechanical properties of rare oxide reinforced Mg alloy based MMCs. Magnesium matrix considered in the study is AZ91D alloy, whereas rare earth oxides reinforced were CeO2 and Y2O3. The Y2O3 particulate reinforcement percentage was varied from 1 to 3% in the steps of 1% to study its influence on mechanical properties of MMCs. Stir casting route was adopted to fabricate sample for study. Microstructure analysis illustrated the uniform distribution of particulate in matrix alloys. The obtained results revealed the enhanced mechanical properties such as tensile strength, yield strength, elongation and hardness of MMCs due to increased percentage of reinforcement. Fractography analysis of fracture surfaces demonstrated the microcracks and cleavage were dominant in pure alloy. While particle debonding, extensive plastics deformation were prominent in-addition to microcracks in MMCs.
稀土氧化物(CeO2/Y2O3)增强AZ91D镁基复合材料显微组织及拉伸断口研究
本工作旨在研究稀土氧化物增强镁合金基复合材料的力学性能。研究中考虑的镁基体是AZ91D合金,而增强的稀土氧化物是CeO2和Y2O3。Y2O3颗粒增强率在1%的步骤中从1%变化到3%,以研究其对MMCs力学性能的影响。采用搅拌铸造工艺制作样品进行研究。微观结构分析表明,颗粒在基体合金中分布均匀。所获得的结果表明,由于增强百分比的增加,MMCs的拉伸强度、屈服强度、伸长率和硬度等力学性能得到了提高。断口断口分析表明,纯合金中以微裂纹和解理为主。当颗粒脱胶时,除了MMCs中的微裂纹外,广泛的塑性变形也很突出。
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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