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Environmental Stress Cracking Resistance of Halloysite Nanoclay-Polyester Nanocomposites

机译:Halloysite Nanoclay-聚酯纳米复合材料的环境应力开裂性

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摘要

The environmental stress cracking resistance of halloysite nanoclay-polyester nanocomposites was investigated using fracture mechanics approach. The incorporation of halloysite nanoclay was found to improve the environmental stress cracking resistance of the nano-composites. The storage modulus of nano-composites measured by dynamic mechanical analysis increased remarkably as a function of halloysite nanoclay content. At 0.7 wt% nanoclay, the Tg improved from 72°C to 76°C. The fracture toughness increased up to 33% and time to failure improved 155% with the addition of 0.7 wt% of halloysite nanoclay. The maximum microhardness was found 119% higher for the same nano-filler concentration compared to monolithic polyester. The reinforcement with 1 wt% showed lower fracture toughness due to agglomerations of nanoclay which act as flaws. The presence of agglomerates weakened the bond between nano-particles and matrix hence reduces the environmental stress cracking resistance by halloysite nanoclay reinforcement.
机译:采用断裂力学方法研究了埃洛石纳米粘土-聚酯纳米复合材料的耐环境应力开裂性能。发现掺入埃洛石纳米粘土可改善纳米复合材料的耐环境应力开裂性。通过动态力学分析测得的纳米复合材料的储能模量随着埃洛石纳米粘土含量的增加而显着增加。在0.7wt%的纳米粘土下,Tg从72℃提高到76℃。通过添加0.7 wt%的埃洛石纳米粘土,断裂韧性提高了33%,断裂时间提高了155%。发现与相同的纳米填料相比,与整体式聚酯相比,最大显微硬度高119%。 1%(重量)的增强材料由于充当裂缝的纳米粘土的团聚而显示出较低的断裂韧性。附聚物的存在削弱了纳米颗粒与基质之间的结合,因此通过埃洛石纳米粘土增强剂降低了耐环境应力开裂性。

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