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Mechanical, dynamic mechanical, and interfacial properties of sisal fiber-reinforced composite with epoxidized soybean oil-based epoxy matrix

机译:具有环氧化大豆油基环氧基质X型纤维增强复合材料的机械,动态机械和界面性能

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In the present investigation, epoxidized soybean oil-based toughened epoxy composites were developed using unidirectional sisal fibers mat aligned at [0 degrees/0 degrees](s) and [0 degrees/90 degrees](s) orientations. Stiffness and strength of the [0 degrees/0 degrees](S) laminated composite are increased by 17% and 121%, respectively, as compared with the [0 degrees/90 degrees](s) oriented composite. Simialrly, Notched impact strength and critical strain energy release rate (K-IC) of [0 degrees/0 degrees](s) laminated composite were also highly improved by 19.5% and 33.4%, respectively, with respect to [0/90] laminated composite. Dynamic mechanical analysis of [0 degrees/0 degrees](s) oriented composite showed high storage modulus and broadened loss tangent curve revealing a strong influence of fiber orientation on damping behavior. The fibre-matrix adhesion in both the biocomposites is confirmed by scanning electron microgrphs of the impact fractured specimens. Contact angle and work of adhesion are measured to investigate the hydrophilic nature of epoxy, its blend, and composite toward water. POLYM. COMPOS., 39:2065-2072, 2018. (c) 2016 Society of Plastics Engineers
机译:在本研究中,使用单向剑麻纤维垫在[0度/0度](s)和[0度/90度](s)方向排列,开发了环氧化豆油基增韧环氧复合材料。与[0度/90度](S)取向复合材料相比,[0度/0度](S)层状复合材料的刚度和强度分别增加了17%和121%。与[0/90]层合复合材料相比,[0°/0°(s)层合复合材料的缺口冲击强度和临界应变能释放率(K-IC)也分别大幅提高了19.5%和33.4%。对[0度/0度](s)取向复合材料的动态力学分析表明,纤维取向对阻尼性能有很大影响,储能模量高,损耗切线曲线变宽。冲击断裂试样的扫描电子显微照片证实了两种生物复合材料中的纤维基质粘附。测量接触角和粘附功,以研究环氧树脂及其混合物和复合材料对水的亲水性。博莱姆。COMPOS。,39:2065-2072, 2018. (c) 2016年塑料工程师学会

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