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The degradation of mechanical properties in halloysite nanoclay-polyester nanocomposites exposed in seawater environment

机译:海水环境下埃洛石纳米粘土-聚酯纳米复合材料力学性能的下降

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摘要

Polyester based polymers are extensively used in aggressive marine environments; however inadequate data available on the effects of the seawater on the polyester based nanocomposites mechanical properties. This paper reports the effect of seawater absorption on the mechanical properties degradation of halloysite nanoclay-polyester nanocomposites. Results confirmed that the addition of halloysite nanoclay into polyester matrix was found to increase seawater uptake and reduce mechanical properties compared to monolithic polyester. The maximum decrease in microhardness, tensile, flexural properties and impact toughness were observed in case of 1 wt% nanoclay. The microhardness decreased from 107 HV to 41.7 HV (61% decrease). The Young’s modulus decreased from 0.6 GPa to 0.4 GPa (decrease 33%). The flexural modulus decreased from 0.6 GPa to 0.34 GPa (43% decrease). The impact toughness dropped from 0.71 kJ/m2 to 0.48 kJ/m2 (32% decrease). Interestingly, the fracture toughness K1C increased with the addition of halloysite nanoclay due to plasticization effect of the resin matrix. SEM images revealed the significant reduction in mechanical properties in case of 1 wt% reinforcement which is attributed to the degradation of the nanoclay-matrix interface influenced by seawater absorption and agglomeration of halloysite nanoclay.
机译:聚酯基聚合物广泛用于恶劣的海洋环境;然而,有关海水对聚酯基纳米复合材料机械性能影响的可用数据不足。本文报道了海水吸收对埃洛石纳米粘土-聚酯纳米复合材料力学性能退化的影响。结果证实,与整体式聚酯相比,发现将埃洛石纳米粘土添加到聚酯基质中会增加海水吸收并降低机械性能。在1wt%的纳米粘土的情况下,观察到显微硬度,拉伸,挠曲性能和冲击韧性的最大降低。显微硬度从107 HV降低到41.7 HV(降低61%)。杨氏模量从0.6 GPa降低到0.4 GPa(降低33%)。弯曲模量从0.6 GPa降低到0.34 GPa(降低43%)。冲击韧性从0.71 kJ / m2下降到0.48 kJ / m2(下降32%)。有趣的是,由于树脂基体的增塑作用,随着添加埃洛石纳米粘土,断裂韧性K1C增大。 SEM图像显示出在增强1wt%的情况下机械性能的显着降低,这归因于受海水吸收和埃洛石纳米粘土团聚影响的纳米粘土-基质界面的降解。

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