Vargas Johnattan, Jalalvand Meisam, Meza Juan Manuel
Materials and Minerals Department, Universidad Nacional de Colombia, Medellin, Colombia.
Industrial Design Department, Instituto Tecnologico Metropolitano - ITM, Medellin, Colombia.
Sci Prog. 2023 Oct-Dec;106(4):368504231207199. doi: 10.1177/00368504231207199.
Natural fibres have proven to be a potential alternative to replace synthetic fibres in some composite materials applications. However, drawbacks such as impregnation difficulties and the poor fibre-matrix interface limit the use of natural fibres in high-performance applications. This work proposes using an acrylic resin to coat the fibre surface to enhance the interfacial compatibility among fique fibres and polyester resin. Pull-out tests revealed an improvement in the interfacial shear strength of about 110% for coated fibres. Furthermore, nanoindentation test, Micro Raman spectroscopy and scanning electronic microscopy indicated that the acrylic resin eliminates the gap at the fibre/matrix interface seen in the uncoated fibres. Observed behaviour could be attributed to a better chemical bonding between the fibre and matrix and is also hypothesised that the elastic characteristic of the coating helps to transfer loads effectively from the matrix to the fibre.
在某些复合材料应用中,天然纤维已被证明是替代合成纤维的一种潜在选择。然而,诸如浸渍困难和纤维与基体界面较差等缺点限制了天然纤维在高性能应用中的使用。这项工作提出使用丙烯酸树脂涂覆纤维表面,以增强菲克纤维与聚酯树脂之间的界面相容性。拔出试验表明,涂覆纤维的界面剪切强度提高了约110%。此外,纳米压痕试验、显微拉曼光谱和扫描电子显微镜表明,丙烯酸树脂消除了未涂覆纤维在纤维/基体界面处出现的间隙。观察到的行为可归因于纤维与基体之间更好的化学键合,并且还推测涂层的弹性特性有助于将载荷从基体有效地传递到纤维上。