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Nonisothermal crystallization kinetics of polytetrafluoroethylene/solid glass microsphere composites

机译:聚四氟乙烯/固体玻璃微球复合材料的非等温结晶动力学

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摘要

The nonisothermal crystallization behavior and kinetics of polytetrafluoroethylene (PTFE) and PTFE/ solid glass microsphere (SGM) composites were investigated with differential scanning calorimetry at various cooling rates (φ's). Three methods, namely, the Jeziorny, Ozawa and Mo methods, were used to describe the nonisothermal crystallization process. The results show that the peak temperature, crystallinity (Xc), and crystallization half-time were strongly dependent on the content of SGMs and U. The SGMs in the PTFE/SGM composites exhibited a higher nucleation activity. The nonisothermal crystallization kinetics of PTFE and the PTFE/SGM composites was analyzed successfully with the Jeziorny and Mo methods; however, the Ozawa equation was invalid for the nonisothermal crystallization process. The crystallization activation energy determined with the Kissinger equation was remarkably lower when a small amount of SGMs (5%) was added and then gradually increased and finally became slightly lower than that of pure PTFE as the content of SGMs increased up to 25% in the composites.
机译:用差示扫描量热法研究了在不同冷却速率(φ)下聚四氟乙烯(PTFE)和PTFE /固体玻璃微球(SGM)复合材料的非等温结晶行为和动力学。三种方法,即Jeziorny,Ozawa和Mo方法,用于描述非等温结晶过程。结果表明,峰值温度,结晶度(Xc)和结晶时间主要取决于SGMs和U的含量。PTFE/ SGM复合材料中的SGMs具有较高的成核活性。用Jeziorny和Mo方法成功地分析了PTFE和PTFE / SGM复合材料的非等温结晶动力学。但是,小泽方程对于非等温结晶过程无效。当添加少量SGM(5%),然后逐渐增加,最终由基辛格方程确定的结晶活化能显着降低,最后随着SGMs含量增加至25%,其逐渐低于纯PTFE。复合材料。

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