Suriani M J, Radzi Fathin Sakinah Mohd, Ilyas R A, Petrů Michal, Sapuan S M, Ruzaidi C M
Faculty of Ocean Engineering Technology and Informatics, Universiti Malaysia Terengganu, Kuala Nerus 21030, Terengganu, Malaysia.
Marine Materials Research Group, Faculty of Ocean Engineering Technology and Informatics, Universiti Malaysia Terengganu, Kuala Nerus 21030, Terengganu, Malaysia.
Polymers (Basel). 2021 Apr 14;13(8):1282. doi: 10.3390/polym13081282.
Oil palm empty fruit bunches (OPEFB) fiber is a natural fiber that possesses many advantages, such as biodegradability, eco-friendly, and renewable nature. The effect of the OPEFB fiber loading reinforced fire retardant epoxy composites on flammability and tensile properties of the polymer biocomposites were investigated. The tests were carried out with four parameters, which were specimen A (constant), specimen B (20% of fiber), specimen C (35% of fiber), and specimen D (50% of fiber). The PET yarn and magnesium hydroxide were used as the reinforcement material and fire retardant agent, respectively. The results were obtained from several tests, which were the horizontal burning test, tensile test, and scanning electron microscopy (SEM). The result for the burning test showed that specimen B exhibited better flammability properties, which had the lowest average burning rate (11.47 mm/min). From the tensile strength, specimen A revealed the highest value of 10.79 N/mm. For the SEM morphological test, increasing defects on the surface ruptured were observed that resulted in decreased tensile properties of the composites. It can be summarized that the flammability and tensile properties of OPEFB fiber reinforced fire retardant epoxy composites were reduced when the fiber volume contents were increased at the optimal loading of 20%, with the values of 11.47 mm/min and 4.29 KPa, respectively.
油棕空果串(OPEFB)纤维是一种天然纤维,具有许多优点,如生物可降解性、环保性和可再生性。研究了OPEFB纤维负载增强阻燃环氧复合材料对聚合物生物复合材料的燃烧性能和拉伸性能的影响。测试针对四个参数进行,即试样A(常量)、试样B(20%纤维)、试样C(35%纤维)和试样D(50%纤维)。聚酯纱线和氢氧化镁分别用作增强材料和阻燃剂。通过水平燃烧试验、拉伸试验和扫描电子显微镜(SEM)等多项测试获得了结果。燃烧试验结果表明,试样B表现出更好的燃烧性能,其平均燃烧速率最低(11.47毫米/分钟)。从拉伸强度来看,试样A的最高值为10.79牛/平方毫米。对于SEM形态测试,观察到表面破裂处的缺陷增加,导致复合材料的拉伸性能下降。可以总结出,当纤维体积含量在20%的最佳负载量下增加时,OPEFB纤维增强阻燃环氧复合材料的燃烧性能和拉伸性能会降低,其值分别为11.47毫米/分钟和4.29千帕。