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首页> 外文期刊>Journal of Applied Polymer Science >Failure mechanism of time-temperature superposition for poly(vinyl chloride)/dioctylphthalate (100/70) system
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Failure mechanism of time-temperature superposition for poly(vinyl chloride)/dioctylphthalate (100/70) system

机译:聚氯乙烯/邻苯二甲酸二辛酯(100/70)体系时温叠加的失效机理

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摘要

The failure behavior and its mechanism of time-temperature superposition (TTS) poly(vinyl chloride) (PVC)/dioctylphthalate (DOP) (100/70) system were studied from low to high temperatures with a step of 10°C. Arrhenius equation, WLF equation, mathematical nonlinear fitting, and manual shift were applied for TTS fitting. None of these methods could obtain the well-superposed master curves with either single horizontal shift or two-dimensional (horizontal and vertical) shift. The rheological data and differential scanning calorimeter (DSC) results were used to explain the failure mechanism of the TTS fitting. The curves of storage modulus versus frequency were well fitted to an empirical equation G ~a = Gaa0 + K? ~n. The yield behavior was used to analyze the influence of test temperature on the dynamic rheological behavior for the PVC/DOP (100/70) system. A transition of rheological behavior from the solid-like to the linear viscoelastic could be observed at 190°C because of the gradual melting of microcrystallites and the destruction of gel networks, which were confirmed by DSC analysis.
机译:研究了温度-温度叠加(TTS)聚氯乙烯(PVC)/邻苯二甲酸二辛基酯(DOP)(100/70)系统的失效行为及其机理,该过程从10℃逐步提高到了高温。 TTS拟合采用Arrhenius方程,WLF方程,数学非线性拟合和手动移位。这些方法都无法通过单水平移动或二维(水平和垂直)移动获得重叠良好的主曲线。流变数据和差示扫描量热仪(DSC)结果用于解释TTS接头的失效机理。储能模量与频率的关系曲线很好地拟合了经验公式G〜a = Gaa0 + K? 〜n。屈服行为用于分析测试温度对PVC / DOP(100/70)系统动态流变行为的影响。由于微晶逐渐熔化和凝胶网络的破坏,在190℃下可以观察到流变行为从固体到线性粘弹性的转变,这通过DSC分析证实。

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