不同基体聚合物中含有 Al2O3 微颗粒对菠萝纤维增强复合材料性能的影响

Indra Mawardi, Hanif Razak, Zaini Akadir, R. Jaya
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摘要

在这项研究中,Al2O3 微粒被用作菠萝纤维增强复合材料的填料,并与不同的基体聚合物一起使用。研究了环氧树脂和不饱和聚酯基体中的 Al2O3 微颗粒对菠萝纤维增强复合材料的机械、物理和热性能的影响。菠萝纤维复合材料采用手糊法制造,其中 Al2O3 的含量有 0、5、10 和 15 wt%,连续菠萝纤维的含量为 30 wt%。根据 ASTM 标准对菠萝纤维复合材料的拉伸强度、弯曲强度、硬度、吸水性和热稳定性进行了研究。结果表明,随着 Al2O3 微粒重量百分比的增加,抗折强度、硬度、密度和耐水性逐渐增加,抗拉强度率逐渐降低。TGA 观察结果表明,Al2O3 微粒提高了复合材料的热稳定性。与不饱和聚酯复合材料相比,以环氧树脂为基体的复合材料在拉伸强度和热稳定性方面更胜一筹。相比之下,不饱和聚酯基复合材料的抗折强度、硬度、密度和耐水性均高于环氧基复合材料。复合材料中 15 wt% Al2O3 微粒含量的影响导致了最高的抗弯强度、硬度、密度和耐吸水性,而拉伸强度值最低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of containing Al2O3 microparticles in different matrix polymers on properties of pineapple fiber-reinforced composites
In this study, Al2O3 microparticle was used as a filler for pineapple fiber reinforced composites with different matrix polymers. The effect of Al2O3 microparticles in the epoxy and unsaturated polyester matrix on the mechanical, physical, and thermal properties of pineapple fiber reinforced composites was investigated. Pineapple fiber composite was manufactured by hand layup with various Al2O3 contents, 0, 5, 10, and 15 wt%, and a 30 wt% continuous pineapple fiber. The tensile, flexural strength, hardness, water absorption, and thermal stability were investigated according to ASTM. The results showed that flexural strength, hardness, density, and water resistance gradually increased, and the tensile strength rate gradually decreased with more the wt.% of Al2O3 microparticle. The TGA observation results indicated that the Al2O3 microparticles improved the composite's thermal stability. Composites with the epoxy matrix are superior in tensile strength and thermal stability compared to composites made of unsaturated polyester. In contrast, unsaturated polyester matrix composites had higher flexural strength, hardness, density, and water resistance than epoxy matrix composites. The effect of the content of 15 wt% Al2O3 microparticles in the composites resulted in the highest flexural strength, hardness, density, and water absorption resistance, while the tensile strength showed the lowest value.
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