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Effect of Fibre and Coupling Agent Contents on Water Absorption and Flexural Modulus of Wood Fibre Polyethylene Composites

机译:纤维和偶联剂含量对木纤维聚乙烯复合材料吸水和弯曲模量的影响

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In two previous studies, wood fiber-reinforced polymer composites (WPC) were prepared via melt processing. In particular, a response surface strategy of a 20 run optimal design for these three factors was adopted. It was found that for these WPC mixing torque, melt viscosity, Young's modulus and tensile stress at break were related to the type of wood used, as well as wood and coupling agent contents. In addition, thermal properties and strain at break were mainly affected by wood and coupling agent contents. Here, a more complete characterization of these WPC under extreme environmental conditions is performed. In particular, the effect of coupling agent content, wood fibre content and wood fibre type on water absorption and flexural modulus are reported under different water immersion time and temperature. The results show that water absorption is influenced by all the parameters studied, while flexural modulus is mainly influenced by wood content and immersion temperature.
机译:在先前的两项研究中,通过熔融加工制备木纤维增强聚合物复合材料(WPC)。特别地,采用了20个对这三种因素的20个运行最佳设计的响应面策略。结果发现,对于这些WPC混合扭矩,熔体粘度,杨氏模量和断裂时的拉伸应力与所用木材的类型,以及木材和偶联剂含量有关。此外,断裂的热性质和菌株主要受木材和偶联剂含量的影响。这里,执行在极端环境条件下更完整的这些WPC表征这些WPC。特别地,在不同的水浸渍时间和温度下报道了偶联剂含量,木纤维含量和木纤维类型对吸水和弯曲模量的影响。结果表明,吸水率受到研究的所有参数的影响,而弯曲模量主要受木材含量和浸渍温度的影响。

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