Sajib Md Abu Rayan, Islam Md Shariful, Arifuzzaman Md, Shoily Safina Kamal
Department of Chemical Engineering, Khulna University of Engineering & Technology, Khulna, 9203, Bangladesh.
Department of Mechanical Engineering, Khulna University of Engineering & Technology, Khulna, 9203, Bangladesh.
Heliyon. 2024 Sep 4;10(18):e37433. doi: 10.1016/j.heliyon.2024.e37433. eCollection 2024 Sep 30.
Natural fiber-reinforced composites are becoming popular day by day because of their low cost and renewable nature. However, a major concern of these composites is water absorption. To minimize the water absorption in natural fiber-reinforced composites, wood varnish coating was used in this paper to investigate the effect of this coating on water absorption and mechanical properties of jute fiber-reinforced composites. Four types of composites were fabricated using the hand lay-up technique, among them on Type 1 no coating was used, Type 2 was surface coated, Type 3 was fiber coated and Type 4 was both fiber and composite surface coated. Water absorption, tensile, bending, short beam shear, and impact tests were performed on the composite specimens according to their respective ASTM standards to see the effect of coating. Both fiber and fracture surface morphology were observed using Scanning Electron Microscope. It was found that the water absorption was significantly reduced for Type 2 (50.31 %) and Type 4 (56.01 %) specimens. However, the tensile strength and bending strength were reduced by 74.17 %, and 72.71 % for Type 3 and 77.07 % and 84.24 % for Type 4 composites while for Type 2, they were slightly increased (7.26 % and 1.13 %). The ILSS of Type 3 and Type 4 were reduced by 69.34 % and 58.07 % respectively while it was reduced by only 4.49 % for Type 2 composite. On the other hand, the impact energy absorption was increased by 85.32 % for Type 4 composite. The findings of this study suggest that Type 2 composite (only composite surface coating) has the overall best performance and wood varnish coating has the potential to reduce the water absorption on natural fiber-reinforced composites.
天然纤维增强复合材料因其低成本和可再生性而日益受到欢迎。然而,这些复合材料的一个主要问题是吸水性。为了使天然纤维增强复合材料的吸水性降至最低,本文使用木漆涂层来研究该涂层对黄麻纤维增强复合材料吸水性和力学性能的影响。采用手糊工艺制备了四种类型的复合材料,其中1型未使用涂层,2型进行了表面涂层,3型进行了纤维涂层,4型则同时对纤维和复合材料表面进行了涂层。根据各自的ASTM标准对复合材料试样进行了吸水性、拉伸、弯曲、短梁剪切和冲击试验,以观察涂层的效果。使用扫描电子显微镜观察了纤维和断裂表面形态。结果发现,2型(50.
31%)和4型(56. 01%)试样的吸水性显著降低。然而,3型复合材料的拉伸强度和弯曲强度分别降低了74. 17%和72. 71%,4型复合材料分别降低了77. 07%和84. 24%,而2型复合材料的拉伸强度和弯曲强度略有增加(7. 26%和1. 13%)。3型和4型的层间剪切强度分别降低了69. 34%和58. 07%,而2型复合材料仅降低了4. 49%。另一方面,4型复合材料的冲击能量吸收增加了85. 32%。本研究结果表明,2型复合材料(仅对复合材料表面涂层)具有总体最佳性能,木漆涂层有潜力降低天然纤维增强复合材料的吸水性。