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Fundamental Studies on Wood-Plastic Composites:Effects of Fiber Concentration and Mixing Temperature on the Mechanical Properties of Poplar/PP Composite

机译:木塑复合材料的基础研究:纤维浓度和混合温度对杨木/ PP复合材料力学性能的影响

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Wood fibers are increasingly being used as reinforcement in commercial thermoplastic composites due to their low cost,high specific properties and renewable nature.The ultimate goal of our research was to find a fundamental understanding of the mechanical behavior of poplar/polypropylene(PP)composites.The effect of wood fiber concentrations and mixing temperature on the mechanical properties of composites,prepared by using MAPP as the coupling agent,was investigated.In the sample preparation,four levels of fiber loading(10,20,30,and 40 wt%)and three compounding temperatures(180,190,and 200°C)were used.Most major changes in composite performance occurred at fiber contents above 30%.The results clearly showed that the fiber loading of 30 and 40 wt% at 190°C was provided adequate reinforcement to increase the tensile and flexural strength of the PP powder.The modulus also increased with increasing the fiber content,because poplar fibers are believed to be more rigid than polymer.However the addition of wood fibers resulted in a decrease in elongation and impact properties of the composites.The FTIR spectroscopy showed that the copolymer was bonded to the fibers by ester linkages and hydrogen bonds at 1705-1735 cm~(-1).
机译:木纤维由于其低成本,高比性能和可再生性质而越来越多地被用作商业热塑性复合材料的增强材料。我们研究的最终目标是找到对杨/聚丙烯(PP)复合材料机械性能的基本了解。研究了以MAPP为偶合剂制备的木纤维浓度和混合温度对复合材料力学性能的影响。在样品制备中,四种纤维负载水平(10、20、30和40 wt%)三种复合温度(180,190和200°C)下使用时,纤维含量超过30%时复合性能发生了主要变化,结果清楚地表明在190°C下纤维负载量为30和40 wt%增强以增加PP粉的拉伸和挠曲强度。模量也随纤维含量的增加而增加,因为人们认为杨木纤维比聚合物更坚硬。 FTIR光谱表明共聚物在1705-1735 cm〜(-1)处通过酯键和氢键键合到纤维上,从而降低了复合材料的伸长率和冲击性能。

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