Sriseubsai Wipoo, Praemettha Ariya
Department of Industrial Engineering, School of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand.
Polymers (Basel). 2024 Dec 30;17(1):64. doi: 10.3390/polym17010064.
This study explored the tensile and impact strength of polylactic acid (PLA) through the incorporation of sisal and coir fibers. Hybrid natural fiber composites were prepared using PLA as the matrix and sisal and coir fibers as the reinforcements. The hybrid composites were prepared with an internal mixer, followed by compression molding. A constrained mixture design was employed to determine the optimal material combinations and their effects on the tensile and impact strength. Confirmatory experiments based on response surface methodology revealed no significant differences in the data means at the 0.05 significance level. PLA reinforced with sisal fibers alone exhibited the highest tensile strength of 75.36 MPa but demonstrated a low impact resistance of 12.94 kJ/m at a 95.22:4.78 (PLA:sisal by volume) ratio. Conversely, the maximum impact resistance of 36.71 kJ/m was achieved with PLA and coir at the same ratio. An optimal blend, consisting of 95.22% PLA, 0.78% sisal, and 4.0% coir by volume, resulted in a tensile strength of 51.08 MPa and an impact strength of 26.59 kJ/m, outperforming other mixtures and pure PLA in the mechanical properties. Additionally, water absorption tests showed that reinforcement with sisal and coir fibers increased both water absorption and stability over 60 h.
本研究通过加入剑麻纤维和椰壳纤维,探究了聚乳酸(PLA)的拉伸强度和抗冲击强度。以PLA为基体,剑麻纤维和椰壳纤维为增强材料,制备了混杂天然纤维复合材料。采用内部混合器制备混杂复合材料,随后进行模压成型。采用约束混合物设计来确定最佳材料组合及其对拉伸强度和抗冲击强度的影响。基于响应面法的验证性实验表明,在0.05显著性水平下,数据均值无显著差异。单独用剑麻纤维增强的PLA在体积比为95.22:4.78(PLA:剑麻)时,表现出最高拉伸强度75.36 MPa,但抗冲击性较低,为12.94 kJ/m。相反,在相同比例下,PLA与椰壳纤维复合材料的最大抗冲击性达到36.71 kJ/m。一种最佳混合物,按体积计由95.22%的PLA、0.78%的剑麻和4.0%的椰壳纤维组成,其拉伸强度为51.08 MPa,抗冲击强度为26.59 kJ/m,在机械性能方面优于其他混合物和纯PLA。此外,吸水性测试表明,用剑麻纤维和椰壳纤维增强在60小时内增加了吸水性和稳定性。