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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Glass transition temperature measured at high frequencies by piezoelectric excitation
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Glass transition temperature measured at high frequencies by piezoelectric excitation

机译:通过压电激励在高频下测量玻璃化转变温度

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摘要

As the temperature of a polymer melt or rubber is lowered, a point known as the glass transition temperature. T_g. is reached where polymeric materials undergo a marked change in progenies associated with the virtual cessation of local molecular m4tion. In fact. as the thermal energy reduces, the distance between macromolecules, and consequently the specific volume of the sample, diminishes. However, this change is not armpit, that is. the glass transition is not a rigorous phase transition from the thermodynamical point of view. Effectively, it depends not only on the polymeric structure but also on the heating rate. the measuring method. etc. Since there is a copious literature referring to traditional methods employed to measure T_g, this work will only present them as a frame to compare them with the experimental procedure we used. The determination of T_g is based on the change of the real component of the dynamic modulus with temperature. This modulus is measured at high frequencies on exciting the sample with a piezoelectric crystal attached to it. Glass transition temperatures of several glassy polymers are determined. These results are compared with values measured through other methods. Finally, the advantages of our procedure are discussed.
机译:随着聚合物熔体或橡胶的温度降低,该点称为玻璃化转变温度。 T_g。当聚合材料的后代发生明显变化时,就达到了这一点,而后代的变化实际上与局部分子断裂的停止有关。事实上。随着热能的降低,大分子之间的距离减小,因此样品的比容减小。但是,这种变化不是腋窝。从热力学观点来看,玻璃化转变不是严格的相变。有效地,它不仅取决于聚合物结构,而且取决于加热速率。测量方法。由于有大量文献引用了用于测量T_g的传统方法,因此本文仅将它们作为框架与我们使用的实验程序进行比较。 T_g的确定是基于动态模量的实数分量随温度的变化。该模量是在高频振动下测量的,样品上附着了压电晶体。确定了几种玻璃状聚合物的玻璃化转变温度。将这些结果与通过其他方法测得的值进行比较。最后,讨论了我们程序的优点。

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