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Effect of treated coir fiber/coconut shell powder and aramid fiber on mechanical properties of vinyl ester

机译:治疗纤维纤维/椰子壳粉和芳族纤维对乙烯基酯机械性能的影响

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The surfaces of coir fiber (CF) and coconut shell powder (CSP) were modified by alkali and silane treatment respectively to investigate the consequent effects on reinforcement of vinyl ester (VE) composites. Mono-composites of VE with surface treated CFs and CSP as well as their hybrid composites with as-received aramid fibers (AFs) have been prepared by hand layup followed by compression molding methods. The effectiveness of surface treated reinforcements in improving the mechanical properties of the composites was demonstrated. Significant differences between VE mono-composites and their hybrid reinforcements on hardness and tensile properties of VE were observed, while no improvement in the above-mentioned properties except for Young's modulus was observed for hybrid composite with AFs. It was also observed that surface treated CFs and CSP reinforced VE composites exhibited better hardness and tensile properties. SEM imaging confirmed decreased fiber pull-out for VE reinforced with alkali treated CFs because of the enhanced adhesion between the CFs and the VE matrix. Flexural properties of all the composites decreased. This study has proved that the mechanical properties of hybrid VE composites can be enhanced by modifying the reinforcements by alkali and silane into their formulations. These results have been explained on the basis of structure and morphology in terms of fractography of VE composites. Furthermore, this study demonstrates that alkali treatment is a promising technique for improving the mechanical properties such as hardness and tensile properties of CF reinforced hybrid polymer matrix composites. POLYM. COMPOS., 39:4542-4550, 2018. (c) 2017 Society of Plastics Engineers
机译:通过碱和硅烷处理改性CoIR纤维(CF)和椰壳粉末(CSP)的表面,研究了对乙烯基酯(Ve)复合材料的增强的影响。用表面处理的CFS和CSP和CSP的单复合材料以及具有接收的芳族聚酰胺纤维(AFS)的杂种复合材料,然后手动敷贴地制备,然后进行压缩模塑方法。证明了表面处理的增强在改善复合材料的力学性能方面的有效性。观察到VE单复合材料与其杂交增强物之间的显着差异,同时没有改善除杨氏模量之外的上述特性,用于用AFS杂交复合材料。还观察到,表面处理的CFS和CSP增强Ve复合材料表现出更好的硬度和拉伸性能。 SEM成像证实,由于CFS和VE基质之间的粘附性增强了碱性处理的CF,因此通过碱处理CF增强的纤维拉出的降低。所有复合材料的弯曲性能下降。本研究证明,通过将碱和硅烷改性加入其制剂,可以通过改变增强剂来增强杂化Ve复合材料的机械性能。在VE复合材料的FRECTOCTES方面,已经在结构和形态的基础上解释了这些结果。此外,该研究表明,碱处理是一种有望的技术,用于改善CF增强杂化聚合物基复合材料的硬度和拉伸性能的机械性能。聚合物。 Compos。,39:4542-4550,2018。(c)2017塑料工程师协会

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