汽车用环氧树脂/赤泥/粉煤灰/铝粉填充复合材料的力学和断裂表面表征

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Frattura ed Integrita Strutturale Pub Date : 2023-03-21 DOI:10.3221/igf-esis.64.06
K. Anil, A. Hemavathi, A. Adeebpasha
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引用次数: 0

摘要

近几十年来,人们可以观察到,在高强度和轻量化应用中,用聚合物复合材料取代传统材料的数量大幅增加。由传统合金制造的汽车和航空航天车辆的高燃料消耗一直是材料工程师面临的巨大挑战。这就要求研究开发与该应用领域中现有材料具有相同甚至优越机械性能的轻质材料。在本研究中,以不同重量百分比的工业废物为填料,制备了环氧基简单混合复合材料。研究了填料类型、组合及其浓度对拉伸、冲击和弯曲强度等力学性能的影响。对复合材料的断裂表面进行了SEM分析,其中发现了微小的孔隙、裂纹萌生和填料拔出,这表明添加偶联剂以获得更好的性能是必要的。在杂化复合材料中,环氧树脂/粉煤灰/赤泥/铝粉(91/6/1.5/1.5wt%)与所研究的其他复合材料相比,表现出最高的极限拉伸模量、弯曲强度和硬度值。
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Mechanical and Fractured surface characterization of epoxy/red mud/fly ash/ aluminium powder filled hybrid composites for automotive applications
In recent decades, one can observe a great increase in the replacement of traditional materials with polymer composites in high-strength and lightweight applications. High fuel consumption by automobile and aerospace vehicles built from legacy alloys has been a great challenge to material engineers. This has called for researches into lighter material development of the same or even superior mechanical properties to the existing materials in this area of applications. In the present study, epoxy based simple and hybrid composites were prepared with the incorporation of industrial waste as fillers at different weight percentages. Effect of filler type, combination and its concentration on mechanical properties such as tensile, impact and flexural strength were investigated. SEM analysis was carried out for fractured surfaces of composites, wherein minor voids, crack initiations and filler pullouts were seen indicating the necessity of coupling agent addition for still better performance. Among hybrid composites, epoxy/fly ash/red mud/aluminium powder (91/6/1.5/1.5 wt%) has showed the highest ultimate tensile modulus, flexural strength and hardness value compared to other composites under study.
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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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