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Influence of the wood fibre filler on the internal recycling of poly(vinyl chloride)-based composites

机译:木纤维填料对聚氯乙烯基复合材料内部循环的影响

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The recycling of internal waste of poly(vinyl chloride) (PVC) and wood fibre-reinforced PVC composite was investigated and compared. Twenty extrusion-milling cycles were performed and the mechanical and thermal properties evaluated. This comparison provided evidence of the influence of the vegetable fibres on the thermo-mechanical degradation of the composite material. Up to five cycles, the composite properties remained stable. But after 10 cycles and especially at 20 cycles, the flexural strength increased, whereas the other mechanical properties remained almost constant. At the same time, a decrease of the degradation temperature revealed a deterioration of the molecular structure. The PVC properties remained constant, whereas a great increase in the impact strength was observed after 20 cycles without deterioration of the molecular structure. The different behaviours between the composite and the PVC were explained by the influence of the fibres, which accelerated the PVC degradation, characterized by dehydrochlorination followed by crosslinking reactions.
机译:研究并比较了聚氯乙烯和木纤维增强的聚氯乙烯复合材料内部废物的回收利用。进行了20个挤压-铣削循环,并评估了机械和热性能。该比较提供了植物纤维对复合材料的热机械降解的影响的证据。多达五个循环,复合材料性能保持稳定。但是在10个循环后,尤其是在20个循环后,抗弯强度增加,而其他机械性能几乎保持不变。同时,降解温度的降低表明分子结构的劣化。 PVC性能保持恒定,而在20次循环后观察到冲击强度大大提高,而分子结构没有恶化。纤维的影响解释了复合材料和PVC之间的不同行为,这种影响加速了PVC的降解,其特征是脱氯化氢,然后发生交联反应。

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