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Fracture Toughness Studies of Polypropylene- Clay Nanocomposites and Glass Fibre Reinfoerced Polypropylene Composites

机译:聚丙烯-粘土纳米复合材料和玻璃纤维增​​强聚丙烯复合材料的断裂韧性研究

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In this paper, a comparative study on the fracture toughness of woven glass fibre reinforced polypropylene, chopped glass fibre reinforced polypropylene and nanoclay filled polypropylene composites is presented. Nanoclays (Cloisite 15A) of 1 wt. % to 5 wt. % were filled in polypropylene (PP) matrix and they were subjected to fracture toughness stu-dies. The specimen with 5 wt. % nanoclay showed 1.75 times and 3 times improvement in critical stress intensity factor (KIC) and strain energy release rate (GIC), respectively, over virgin PP. On the other hand, 3 wt. % nanoclay PP composites showed superior crack containment properties. These structural changes of composite specimens were examined using Transmission Electron Microscopy (TEM) and X-ray diffraction (XRD) methods. It showed that exfoli-ated nanocomposite structures were formed up to 3 wt. % nanoclay, whereas, intercalated nanocomposite structures formed above 3 wt. % nanoclay in the PP matrix. Furthermore, the woven fibre reinforced PP composites demonstrated superior crack resistant properties than that of clay filled nanocomposites and chopped fibre PP composites. However, KIC and GIC values for woven fibre composites were lesser than that of chopped fibre composites. Moreover, KIC and GIC values for both nanoclay filled PP composites and woven fibre composites are comparable even though the clay filled PP demonstrated catastrophic failure. Also, the crack propagation rate of PP-nanoclay composites is comparable to that of chopped fibre composites.
机译:本文对玻璃纤维增​​强聚丙烯,短切玻璃纤维增​​强聚丙烯和纳米粘土填充聚丙烯复合材料的断裂韧性进行了比较研究。 1wt。%的纳米粘土(Cloisite 15A)。 %至5 wt。 %填充在聚丙烯(PP)基体中,并对其进行断裂韧性研究。 5 wt。 %的纳米粘土表明,与原始PP相比,临界应力强度因子(KIC)和应变能释放速率(GIC)分别提高了1.75倍和3倍。另一方面,3 wt。 %的纳米粘土PP复合材料显示出优异的裂纹抑制性能。使用透射电子显微镜(TEM)和X射线衍射(XRD)方法检查了复合材料样品的这些结构变化。结果表明,剥落的纳米复合材料结构最多可形成3 wt%。 %的纳米粘土,而在3wt%以上形成插入的纳米复合结构。 PP基体中的%纳米粘土。此外,机织纤维增强PP复合材料表现出比粘土填充纳米复合材料和短切纤维PP复合材料优异的抗裂性能。但是,机织纤维复合材料的KIC和GIC值比短切纤维复合材料小。而且,即使粘土填充的PP表现出灾难性的破坏,纳米粘土填充的PP复合材料和机织纤维复合材料的KIC和GIC值也相当。而且,PP-纳米粘土复合材料的裂纹扩展速率与短切纤维复合材料的裂纹扩展速率相当。

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