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Temperature modulation effects on a material's properties: Thermodynamics and dielectric relaxation during polymerization

机译:温度调制对材料性能的影响:聚合过程中的热力学和介电弛豫

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摘要

Because of the nonlinear change in the properties of a material with change in temperature, sinusoidal temperature modulation will alter the magnitude of a measured property and the rate of an irreversible transformation. These effects are mathematically described and elaborated. From real-time dielectric spectroscopy and calorimetric measurements performed on a model liquid undergoing stepwise network structure polymerization until its vitrification, it is shown that the effects of sinusoidal temperature modulation are substantial, and need to be considered in the analysis of the data. Features that appear in the plots against time vanish in plots against the extent of polymerization, an intrinsic property. Fourier transform of the heat flow in response to a sinusoidal temperature modulation may help determined the magnitude of this effect in the form of second or higher order harmonic terms. This is turn may be used to calculate the temperature and time dependence of the nonlinear effects. These fundamental aspects will be useful for the current efforts in incorporating sinusoidal temperature modulation in calorimetry.
机译:由于材料特性随温度变化的非线性变化,正弦温度调制将改变被测特性的大小和不可逆转变的速率。这些影响在数学上进行了描述和阐述。从对正在经历逐步网络结构聚合的模型液体进行实时介电谱和量热测量直至玻璃化,已表明正弦温度调制的影响是巨大的,在数据​​分析中需要考虑这些因素。随时间变化的曲线图中显示的特征在随聚合程度(固有的特性)的曲线图中消失。响应于正弦温度调制的热流的傅立叶变换可以以二阶或更高阶谐波项的形式帮助确定这种影响的大小。这可用于计算非线性效应的温度和时间依赖性。这些基本方面对于将正弦温度调制纳入量热法的当前工作将是有用的。

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