Hadi Agung Efriyo, Hamdan Mohammad Hazim Mohamad, Siregar Januar Parlaungan, Junid Ramli, Tezara Cionita, Irawan Agustinus Purna, Fitriyana Deni Fajar, Rihayat Teuku
Mechanical Engineering Department, Faculty of Engineering, Universitas Malahayati, Jl. Pramuka No. 27, Kemiling, Bandar Lampung 35153, Indonesia.
Faculty of Engineering and Computing, First City University College, No. 1, Persiaran Bukit Utama, Bandar Utama, Petaling Jaya 47600, Malaysia.
Polymers (Basel). 2021 Aug 1;13(15):2572. doi: 10.3390/polym13152572.
Woven laminated composite has gained researchers' and industry's interest over time due to its impressive mechanical performance compared to unidirectional composites. Nevertheless, the mechanical properties of the woven laminated composite are hard to predict. There are many micromechanical models based on unidirectional composite but limited to the woven laminated composite. The current research work was conducted to evaluate elastic moduli of hybrid jute-ramie woven reinforced unsaturated polyester composites using micromechanical effectiveness unidirectional models, such as ROM, IROM, Halpin-Tsai, and Hirsch, which are based on stiffness. The hybrid jute-ramie laminated composite was fabricated with different layering sizes, and the stacking sequence was completed via hand lay-up with the compression machine. Tensile modulus values for hybrid composites are between those for single jute and single ramie. Obtained -values less than 0.05 prove the relationship between layering size and tensile modulus. This study showed that several micromechanical models, such as Halpin-Tsai's predicted value of homogenized mechanical properties, were in good agreement with the experimental result. In the case of the hybrid composite, the micromechanical model deviates from the experimental result. Several modifications are required to improve the current existing model. A correlation function was calculated based on the differences between the elastic modulus values determined experimentally and those derived from each micromechanical model calculation.
随着时间的推移,编织层压复合材料因其与单向复合材料相比令人印象深刻的机械性能而引起了研究人员和业界的关注。然而,编织层压复合材料的机械性能很难预测。有许多基于单向复合材料的微观力学模型,但仅限于编织层压复合材料。当前的研究工作是使用基于刚度的微观力学有效单向模型,如ROM、IROM、Halpin-Tsai和Hirsch,来评估黄麻-苎麻混合编织增强不饱和聚酯复合材料的弹性模量。制备了不同层数尺寸的黄麻-苎麻混合层压复合材料,并通过手动铺层和压力机完成堆叠顺序。混合复合材料的拉伸模量值介于单黄麻和单苎麻复合材料的拉伸模量值之间。获得的小于0.05的值证明了层数尺寸与拉伸模量之间的关系。这项研究表明,几种微观力学模型,如Halpin-Tsai对均匀化力学性能的预测值,与实验结果吻合良好。在混合复合材料的情况下,微观力学模型与实验结果存在偏差。需要进行一些修改来改进现有的模型。基于实验测定的弹性模量值与每个微观力学模型计算得出的弹性模量值之间的差异计算了一个相关函数。