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Comparison on mechanical properties of lignocellulosic flour epoxy composites prepared by using coconut shell, rice husk and teakwood as fillers

机译:使用椰壳,稻壳和柚木制备木质纤维素粉环氧复合材料的力学性能比较

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摘要

The objective of this work was to investigate the feasibility of using lignocellulosic fillers (coconut shell, rice husk and teakwood) as alternative reinforcement for expensive non-renewable fillers being used in conventional composites. Various concentrations of epoxy based bio-fillers composites were prepared and the influences of filler size (75-105 and 106-180 m) and mass concentrations (2.5 and 4.5 wt.%) on the mechanical properties were investigated. Properties such as deformability, stiffness, elasticity and strain energy absorption ability of each material combination were determined using single indentation load control, single indentation displacement control and multi-cyclic indentation tests. The results showed that parameters such as filler size, volume content, filler type (chemical composition and shape) dispersion influenced these properties. It was revealed that high lignin content increased the stiffness whereas high cellulose content with high impregnation ability favoured deformability. High cellulose content and surface roughness supported better adhesion due to a large number of hydrogen bonds and high mechanical interlocking respectively.
机译:这项工作的目的是探讨使用木质纤维素填料(椰子壳,稻壳和柚木)作为常规复合材料中使用的昂贵不可再生填料的替代增强的可行性。制备各种浓度的环氧基生物填料复合材料,研究了填料尺寸(75-105和106-180μm)和质量浓度(2.5和4.5重量%)的影响。使用单个压痕载荷控制,单个压痕位移控制和多循环压痕测试确定各材料组合的可变形性,刚度,弹性和应变能量吸收能力等性质。结果表明,填料尺寸,体积含量,填料型(化学成分和形状)分散等参数影响了这些性质。揭示高木质素含量增加刚度,而具有高浸渍能力的高纤维素含量有利于可变形性。高纤维素含量和表面粗糙度由于大量氢键和高机械互锁而支持更好的粘附性。

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