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Time-Temperature Dependent Creep and Recovery Behaviour of MWCNTs-Polypropylene Nanocomposites

机译:MWCNT-聚丙烯纳米复合材料的时间温度依赖性蠕变和恢复行为

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Time-dependent viscoelastic materials are characterized by their creep, recovery and stress relaxation behaviour under different thermo-mechanical conditions. Thermoplastic polymers are lightweight and fatigue resistant, among which polypropylene (PP) is widely used. Its high isotacticity provides excellent physical and mechanical properties. In the present study, multi-walled carbon nanotubes-polypropylene nanocomposites (MWCNTs/PP) were developed by solvent casting method using isotactic PP with MWCNT-COOH (surface functionalized). Surface morphology was observed using scanning electron microscopy to check for a uniform distribution of CNT into PP matrix. Time-temperature controlled short and long-term creep and recovery tests were conducted in creep mode using DMA. The effects of loading time and temperature on creep and recovery behaviour of nanocomposites with CNT loading were studied with respect to structural behaviour and thermal stability using SEM and TGA. It was found that MWCNT-PP nanocomposites show a decrease in creep compliance and creep and recovery strains at 20 °C, and an increase in creep compliance at 50 °C due to the relative motion of entangled polymeric chain and MWCNT.
机译:时间依赖性粘弹性材料的特征在于它们在不同热机械条件下的蠕变,回收和应力松弛行为。热塑性聚合物是轻质和抗疲劳的耐疲劳性,其中广泛使用聚丙烯(PP)。其高同位素提供出色的物理和机械性能。在本研究中,通过使用MWCNT-COOH(表面官能化表面)的全同立构PP,通过溶剂铸造方法开发多壁碳纳米管 - 聚丙烯纳米复合材料(MWCNTS / PP)。使用扫描电子显微镜观察表面形态,以检查CNT的均匀分布进入PP矩阵。使用DMA在蠕变模式下在蠕变模式下进行时间温度控制的短期和长期蠕变和恢复测试。通过SEM和TGA研究了CNT载荷的纳米复合材料与CNT载荷的蠕变和恢复行为的影响。发现MWCNT-PP纳米复合材料显示蠕变顺应性和蠕变和蠕变和回收菌株在20℃下降低,并且由于缠结的聚合物链和MWCNT的相对运动,在50℃下蠕变顺应性增加。

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