Effect of particle size and weight fraction of SiC on the mechanical, tribological, morphological, and structural properties of Al-5.6Zn-2.2Mg-1.3Cu composites using RSM: fabrication, characterization, and modelling.

IF 3.6 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Heliyon Pub Date : 2022-09-13 eCollection Date: 2022-09-01 DOI:10.1016/j.heliyon.2022.e10602
Ravinder Kumar, Kanishka Jha, Shubham Sharma, Vineet Kumar, Changhe Li, Elsayed Mohamed Tag Eldin, S Rajkumar, G Królczyk
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引用次数: 5

Abstract

Stir-casting was employed to create Al-5.6Zn-2.2Mg-1.3Cu composites with particle sizes ranging from 30 to 90 μm and a weight fraction of 5-15 SiC articles. The mechanical and wear properties of the material have been assessed. The wear-behaviour of Al-5.6Zn-2.2Mg-1.3Cu composites was investigated using dry pin-on-disc wear testing. Various loads (20 N-60 N), speeds (2 m/s-6 m/s), and sliding-distances were used in the sliding wear experiments (2000 m-4000 m). In the experimental process, XRD, SEM, and EDX were used to characterize the microstructures and materials of diverse composites. Uniform dispersion of the SiC particles is clearly observed in the SEM image. The micro hardness of SiC particles increases by 13% when the weight percent of SiC particles is increased from 5% to 15%. SiC particles outperform tiny SiC particles in terms of wear-resistance. With increasing load, the particular wear-rate showed an increasing trend (20-60 N). The wear-rate of the composite lowers as the weight percentage reinforcement increases (wt. 5% to wt. 15%), and the wear-rate of the composite increases when the particle-size (30 μm-90 μm) increases. The results demonstrated that composites supplemented with coarse SiC particles outperform tiny SiC particles in terms of wear resistance.

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SiC粒度和重量分数对RSM Al-5.6Zn-2.2Mg-1.3Cu复合材料力学、摩擦学、形貌和结构性能的影响:制备、表征和建模
采用搅拌铸造法制备了Al-5.6Zn-2.2Mg-1.3Cu复合材料,该复合材料的粒径为30 ~ 90 μm, SiC颗粒的质量分数为5 ~ 15。对该材料的机械性能和磨损性能进行了评估。采用干式针盘式磨损试验研究了Al-5.6Zn-2.2Mg-1.3Cu复合材料的磨损性能。在2000 m-4000 m的滑动磨损实验中,采用了不同载荷(20 N-60 N)、速度(2 m/s-6 m/s)和滑动距离,并利用XRD、SEM和EDX对不同复合材料的微观组织和材料进行了表征。在SEM图像中可以清楚地观察到SiC颗粒的均匀分散。当SiC颗粒的重量百分比由5%提高到15%时,SiC颗粒的显微硬度提高了13%。SiC颗粒在耐磨性方面优于微小SiC颗粒。随着载荷的增加,复合材料的比磨损率呈增加趋势(20 ~ 60 N),复合材料的比磨损率随着增强率的增加(wt. 5% ~ wt. 15%)而降低,随着粒径(30 μm ~ 90 μm)的增加,复合材料的比磨损率增加。结果表明,添加粗SiC颗粒的复合材料的耐磨性优于细小SiC颗粒。
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来源期刊
Heliyon
Heliyon MULTIDISCIPLINARY SCIENCES-
CiteScore
4.50
自引率
2.50%
发文量
2793
期刊介绍: Heliyon is an all-science, open access journal that is part of the Cell Press family. Any paper reporting scientifically accurate and valuable research, which adheres to accepted ethical and scientific publishing standards, will be considered for publication. Our growing team of dedicated section editors, along with our in-house team, handle your paper and manage the publication process end-to-end, giving your research the editorial support it deserves.
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