Synthesis and characterisation of E-glass based composites with different fillers for defence automotive applications

M. Sinha, R. Tyagi
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Abstract

The fibre composites are special materials consisting of unique properties such as high specific strength, high specific stiffness, corrosion resistance, high fatigue life etc. They have immense potential to replace the traditionally utilised materials, steel and aluminium for manufacturing of various components of vehicles which renders them very heavy and bulky. This paper demonstrates the feasibility of producing innovative alternative lighter composite materials using E-glass for increasing the safety, movability, performance of the military vehicles. Five different composites were synthesis without fillers and with 4% ZnO, SiO, carbon black and hybrid fillers using hand layup technique. Various mechanical tests such as tension, compression, flexural, inter laminar shear, impact and hardness test were performed on the composites to evaluate and analyse their mechanical properties for exploration of their effective utilisation in automobiles. The study determined that the composite with ZnO filler manifested superlative behaviour in comparison to other materials under examination.
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国防汽车用不同填料e -玻璃基复合材料的合成与表征
纤维复合材料是一种特殊材料,具有高比强度、高比刚度、耐腐蚀性、高疲劳寿命等独特性能。它们具有巨大的潜力,可以取代传统使用的材料,如钢和铝,用于制造车辆的各种部件,这些部件使其变得非常笨重。本文论证了利用E玻璃生产创新的替代轻质复合材料的可行性,以提高军用车辆的安全性、可移动性和性能。采用手工叠层技术,在不含填料的情况下,用4%ZnO、SiO、炭黑和杂化填料合成了五种不同的复合材料。对复合材料进行了各种力学测试,如拉伸、压缩、弯曲、层间剪切、冲击和硬度测试,以评估和分析其力学性能,探索其在汽车中的有效应用。该研究确定,与所研究的其他材料相比,含有ZnO填料的复合材料表现出最优异的性能。
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来源期刊
International Journal of Microstructure and Materials Properties
International Journal of Microstructure and Materials Properties Materials Science-Materials Science (all)
CiteScore
0.70
自引率
0.00%
发文量
27
期刊介绍: IJMMP publishes contributions on mechanical, electrical, magnetic and optical properties of metal, ceramic and polymeric materials in terms of the crystal structure and microstructure. Papers treat all aspects of materials, i.e., their selection, characterisation, transformation, modification, testing, and evaluation in the decision-making phase of product design/manufacture. Contributions in the fields of product, design and improvement of material properties in various production processes are welcome, along with scientific papers on new technologies, processes and materials, and on the modelling of processes.
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