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Facile Preparation of Modified Carbon Nanotube-Reinforced PBT Nanocomposites With Enhanced Thermal, Flame Retardancy, and Mechanical Properties

机译:简便制备具有增强的热,阻燃性和机械性能的改性碳纳米管增强的PBT纳米复合材料

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In this study, the carbon nanotube was modified by inorganic acids to introduce the carboxylic acid groups on the surface. The modified carbon nanotube (mCNT)-reinforced poly(1,4-butylene terephthalate) (PBT) nanocomposites were prepared through melt blending method. Morphological observations revealed that the m-CNT particles were homogeneously dispersed in PBT matrix. Differential scanning calorimeter (DSC) analysis showed that a very small quantity of m-CNT can significantly increase the crystallization temperature of PBT. The improvement of thermal stability and tensile strength/modulus of the nanocomposites strongly depended on the uniform dispersion of mCNT and the interactions between m-CNT and PBT through hydrogen-bonding formation. In the cone calorimeter testing, the PHRR decreased from 1189 kW/m(2) for neat PBT to 737 kW/m(2) for PBT/0.9m-CNT containing 0.9 wt% m-CNT with a reduction of 38%. The remarkable enhancement of flame retardancy properties was attributed to the condensed-phase effect acted by the m-CNT. (C) 2014 Society of Plastics Engineers
机译:在这项研究中,碳纳米管被无机酸改性以在表面引入羧酸基团。通过熔融共混法制备了改性碳纳米管(mCNT)增强的聚对苯二甲酸1,4-丁二醇酯(PBT)纳米复合材料。形态学观察表明,m-CNT颗粒均匀地分散在PBT基质中。差示扫描量热仪(DSC)分析表明,少量的m-CNT可以显着提高PBT的结晶温度。纳米复合材料的热稳定性和拉伸强度/模量的提高强烈取决于mCNT的均匀分散以及m-CNT与PBT之间通过氢键形成的相互作用。在锥形量热仪测试中,PHRR从纯PBT的1189 kW / m(2)降至含0.9 wt%m-CNT的PBT / 0.9m-CNT的737 kW / m(2),降低了38%。阻燃性能的显着提高归因于m-CNT的凝聚相效应。 (C)2014年塑料工程师学会

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