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Synthesis and Characterisation of Polyester Resin Matrix Composites Reinforced with Pineapple Leaf Micro Particles

机译:用菠萝叶片微粒加固聚酯树脂基复合材料的合成与表征

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Reinforcement of polymers with particles to enhance their mechanical properties for various applications cannot be over emphasized. Hence, the microstructure and mechanical behaviour of polyester resin matrix composites reinforced with pineapple leaf particles was studied in order to develop an engineering material for industrial applications. Pineapple leaf particles treated and untreated with NaOH were separately blended with unsaturated polyester resin. 1 g of catalyst and 0.5 g of accelerator were added to the mixture to achieve a homogeneous interfacial interaction. The composites were made by mould casting and their microstructure and mechanical properties were evaluated. The NaOH treated pineapple leaf particles reinforced composite exhibited the highest tensile strength of 98.73 MPa at 15 wt. % and impact energy of 20.73 J at 20 wt. %. Microstructure showed a fairly uniform distribution of the pineapple leaf particles in the polyester resin matrix coupled with the strong interfacial bonding of the filler and matrix as the major factors responsible for the enhancement of the tensile strength and impact energy of the composites.
机译:用颗粒加固聚合物以增强它们的各种应用的机械性能不能通过强调。因此,研究了用菠萝叶片增强的聚酯树脂基质复合材料的微观结构和力学行为,以开发工业应用的工程材料。用NaOH处理和未治疗的菠萝叶颗粒与不饱和聚酯树脂分别混合。向混合物中加入1g催化剂和0.5g促进剂以实现均匀的界面相互作用。复合材料是通过模塑铸造的,并评估它们的微观结构和机械性能。 NaOH处理的菠萝叶颗粒增强复合材料在15重量%下表现出98.73MPa的最高拉伸强度。 20%wt的%和冲击能量为20.73J。 %。微观结构在聚酯树脂基质中显示出相当均匀的菠萝叶颗粒分布,其与填料强的界面和基质的强界面键合,作为负责增强复合材料的抗拉强度和冲击能量的主要因素。

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