Nano reinforcement technique as a tool for enhancement the mechanical and fatigue properties

IF 1.1 Q4 MECHANICS Curved and Layered Structures Pub Date : 2022-01-01 DOI:10.1515/cls-2022-0026
Abdulwahab M. Al-Mushehdany, M. Yahya, Esraa Kadhim Ibrahim, H. J. Alalkawi
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引用次数: 3

Abstract

Abstract For the past three decades, AA7075 based metal matrix composite materials showed more attraction due to their enhanced mechanical and fatigue properties. The mechanical and fatigue behaviour of nano composites needs more investigation for their applications. In the present study, stir casting route based AA7075 reinforced with nano – sized, Al2O3 particles (average size 35 nm). The evaluation of mechanical and fatigue properties in the nano cast composites and matrix were carried out at room temperature (RT). The composites and base metalwere subjected to high and low cycle fatigue. Scanning Electron Microscope was used to estimate fatigue behaviour of nano composites samples. The mechanical and fatigue properties was enhanced by the nano Al2O3, when compared to the matrix. The microsite evaluation showed uniform distribution of Al2O3 particles into the matrix and few porosity was recorded. The improvement of the properties above is attributed to the grain refinement and to the distribution of the Al2O3.
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纳米增强技术作为一种提高机械和疲劳性能的工具
在过去的三十年里,AA7075基金属基复合材料因其优异的力学性能和疲劳性能而受到越来越多的关注。纳米复合材料的力学性能和疲劳性能有待进一步研究。本研究采用搅拌浇铸法制备了纳米Al2O3增强AA7075(平均尺寸为35 nm)。在室温下对纳米铸造复合材料和基体的力学性能和疲劳性能进行了评价。对复合材料和母材进行了高、低周疲劳试验。利用扫描电镜对纳米复合材料试样的疲劳行为进行了表征。与基体相比,纳米Al2O3增强了材料的力学性能和疲劳性能。显微形貌分析表明,Al2O3颗粒在基体中分布均匀,孔隙率较低。上述性能的改善与晶粒细化和Al2O3的分布有关。
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来源期刊
CiteScore
2.60
自引率
13.30%
发文量
25
审稿时长
14 weeks
期刊介绍: The aim of Curved and Layered Structures is to become a premier source of knowledge and a worldwide-recognized platform of research and knowledge exchange for scientists of different disciplinary origins and backgrounds (e.g., civil, mechanical, marine, aerospace engineers and architects). The journal publishes research papers from a broad range of topics and approaches including structural mechanics, computational mechanics, engineering structures, architectural design, wind engineering, aerospace engineering, naval engineering, structural stability, structural dynamics, structural stability/reliability, experimental modeling and smart structures. Therefore, the Journal accepts both theoretical and applied contributions in all subfields of structural mechanics as long as they contribute in a broad sense to the core theme.
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