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Thermal Degradation Kinetics of ZnO/polyester Nanocomposites

机译:ZnO /聚酯纳米复合材料的热降解动力学

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摘要

ZnO particles were synthetized by the sol–gel method and subsequent heat treatment of 400, 500 and 600 °C was applied. The nano ZnO particles were incorporated to the unsaturated polyester resin by solution blending at 0.05 wt % concentration. X-ray diffraction detected the formation of a wurtzite-like structure. Viscoelastic behavior of neat polyester and nanocomposites revealed the nano ZnO particles does not promote better mechanical properties because of a weak interaction and the glass transition temperature of the polyester was favored by the presence of a higher quantity of nano-size ZnO particles. Thermogravimetric analysis at 5, 10 and 20 °C/min allowed determining the degradation kinetic parameters based on the Friedman and Kissinger models for neat polyester and nanocomposites. Heating rates promoted an increase in the temperature degradation and the addition of ZnO particles promoted a catalyst effect that reduce the amount of thermal energy needed to start the thermal degradation.
机译:通过溶胶 - 凝胶法合成ZnO颗粒,并施加随后的热处理400,500和600℃。通过溶液混合在0.05wt%的浓度下将纳米ZnO颗粒掺入不饱和的聚酯树脂中。 X射线衍射检测到形成紫立岩状结构。纯聚酯和纳米复合材料的粘弹性行为揭示了纳米ZnO颗粒由于弱相互作用,并且聚酯的玻璃化转变温度通过存在较高量的纳米尺寸的ZnO颗粒而受到青睐。在5,10和20°C / min的热重分析允许基于Friedman和Kissinger模型的纯聚酯和纳米复合材料确定降解动力学参数。加热速率促进了温度降解的增加,并加入ZnO颗粒促进催化剂效果,从而减少开始热降解所需的热能量。

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