Investigation of mechanical properties and dynamic characteristics of OPEFB Fiber Composite

Misran Misran, Zuhaimi Zuhaimi, Nurlaili Nurlaili, Darmein Darmein, Zaini Zaini, Amir D, Hanif Hanif
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Abstract

Composite materials is increasingly experiencing an increa- sing trend, the manufacture of composites currently uses a lot of natural fiber reinforcement, Oil Palm Empty Fruit Bunches (OPEFB) fiber is a fiber that comes from oil palm empty fruit bunches waste that grows a lot in Indonesia and has the potential to be used as reinforcement in the manufacture of composites. With natural fiber reinforcement. The manufacture of composites in this study varied the fiber volume fraction by 5%, 15%, and 25%. Many previous studies on composite materials have focused on studying the physical and mechanical properties of composites. Even though damage to a structure or material is not only caused by static loads but also by dynamic loads. Vibration is a dynamic load experienced by material or structure, so it is necessary to determine the dynamic character of composite materials, one of the dynamic characteristics of materials is their natural frequency, the determination of the natural frequency in this study was carried out by using the finite element method in the ANSYS software. The results of the analysis in the form of tensile strength values and modulus of elasticity were obtained from tensile testing and dynamic characters in the form of natural frequencies and vibration modes were obtained from the analysis modal simulation process. From the results of the tensile test, it was found that the composite with a variation of 15% OPEFB fiber volume had the highest tensile strength and modulus of elasticity, as well as the results of the analysis modal simulation, a composite with 15% OPPEFB fiber, had the highest natural frequency value among the other two variations.
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OPEFB纤维复合材料力学性能及动态特性研究
复合材料正日益经历着日益增长的趋势,复合材料的制造目前使用了大量的天然纤维增强,油棕空果束(OPEFB)纤维是一种来自印度尼西亚大量生长的油棕空果束废弃物的纤维,具有在复合材料制造中用作增强材料的潜力。采用天然纤维加固。本研究制备的复合材料纤维体积分数分别为5%、15%和25%。以往对复合材料的研究主要集中在对复合材料物理力学性能的研究上。即使结构或材料的损坏不仅是由静载荷引起的,而且是由动载荷引起的。振动是材料或结构所经历的动载荷,因此有必要确定复合材料的动态特性,材料的动态特性之一是其固有频率,本研究中固有频率的确定是在ANSYS软件中采用有限元法进行的。通过拉伸试验获得拉伸强度值和弹性模量形式的分析结果,通过模态仿真过程获得固有频率和振动模态形式的动态特性。拉伸试验结果表明,当OPPEFB纤维体积变化15%时,复合材料的抗拉强度和弹性模量最高;分析模态仿真结果表明,当OPPEFB纤维体积变化15%时,复合材料的固有频率值最高。
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