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Experimental and theoretical studies on the properties of injection moulded glass fibre reinforced mixed plastics composites

机译:注塑玻璃纤维增​​强混合塑料复合材料性能的实验和理论研究

摘要

Recycled mixed post-consumer and post-industrial plastic wastes consisting of HDPE, LDPE and PP were injection moulded with short glass fibre (10–30% by weight) to produce a new generation composite materials. Intensive experimental studies were then performed to characterise the tensile, compression and flexural properties of glass fibre reinforced mixed plastics composites. With the addition of 30 wt.% of glass fibre, the strength properties and elastic modulus increased by as much as 141% and 357%, respectively. The best improvement is seen in the flexural properties due to the better orientation of the glass fibres in the longitudinal direction at the outer layers. The randomness and length of the glass fibre were accounted to modify the existing rule of mixture and fibre model analysis to reliably predict the elastic and strength properties of glass fibre reinforced mixed plastics composites.
机译:将由HDPE,LDPE和PP组成的回收的混合消费后和工业后塑料废料与短玻璃纤维(按重量计10%至30%)注塑成型,以生产新一代复合材料。然后进行了深入的实验研究,以表征玻璃纤维增​​强混合塑料复合材料的拉伸,压缩和弯曲性能。加入30%(重量)的玻璃纤维,强度性能和弹性模量分别增加了141%和357%。由于玻璃纤维在外层沿纵向方向的更好取向,在弯曲性能方面可以看到最好的改善。考虑到玻璃纤维的随机性和长度,以修改现有的混合规则和纤维模型分析,以可靠地预测玻璃纤维增​​强混合塑料复合材料的弹性和强度性能。

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