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首页> 外文期刊>Journal of Cleaner Production >Effect of filler load on the curing behavior and mechanical and thermal performance of wood flour filled thermoset composites
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Effect of filler load on the curing behavior and mechanical and thermal performance of wood flour filled thermoset composites

机译:填料用量对木粉填充的热固性复合材料的固化性能以及机械和热性能的影响

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摘要

The mechanical and thermal performance of wood flour composites (WFCs) containing thermoset resin is known to be strongly dependent on the curing reaction. In the present work, WFCs were prepared based on either unsaturated polyester, vinylester or epoxy reinforced by oil palm shell (OPS) flour with a major focus being the preferential reaction of the curing initiator with the natural fiber cells instead of the thermoset resin. Increasing the loading of OPS was found to delay the curing reaction of all thermoset resins by decreasing the peak exothermic temperature and increasing the time to peak. Selecting a suitable surface treatment for the OPS was observed to play a significant effect on the rate of curing reaction. Thermal degradation (in an inert atmosphere) and linear shrinkage of the WFCs was found to decrease with an increase in filler load. In terms of the mechanical performance, the flexural modulus increased steadily with filler load whereas the tensile modulus reached its maximum value of 2.74 GPa (30% improvement) at a filler content of 23 wt% for the hot alkali treated OPS reinforced polyester composite. Increasing the filler load was found to decrease the tensile strength whilst the flexural strength experienced an optimal value of 70.6 MPa (28% improvement) for a filler load of 9 wt%. Furthermore, the OPS filler exhibited improved interfacial bonding with the polyester matrix when compared to vinylester and epoxy. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已知包含热固性树脂的木粉复合材料(WFC)的机械和热性能在很大程度上取决于固化反应。在目前的工作中,WFCs是基于不饱和聚酯,乙烯基酯或由油棕壳(OPS)面粉增强的环氧树脂制备的,主要重点是固化引发剂与天然纤维单元而不是热固性树脂的优先反应。发现增加OPS的添加量会降低峰值放热温度并增加达到峰值的时间,从而延迟了所有热固性树脂的固化反应。观察到为OPS选择合适的表面处理剂对固化反应速率具有显着影响。发现WFC的热降解(在惰性气氛中)和线性收缩随填料载荷的增加而降低。在机械性能方面,对于热碱处理的OPS增强聚酯复合材料,当填料含量为23 wt%时,挠曲模量随填料载荷稳定增加,而拉伸模量达到最大值2.74 GPa(提高30%)。发现增加填充物负荷会降低抗张强度,而对于9wt%的填充物负荷,弯曲强度经历了最佳值70.6MPa(改善了28%)。此外,与乙烯基酯和环氧树脂相比,OPS填料与聚酯基体的界面粘合性得到改善。 (C)2017 Elsevier Ltd.保留所有权利。

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