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Pressure dependence of glass transition temperature of elastomeric glasses

机译:弹性玻璃的玻璃化转变温度与压力的关系

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The pressure dependence of the glass transition temperature Tg of two elastomers, Solithane 113 and 3,3‐bis(azidomethyl)oxetane/tetrahydrofuran (BAMO/THF) has been determined, employing high‐pressure differential thermal analysis (HP‐DTA) and dielectric techniques, up to 8.5 kbar. The glasses of the elastomers were named the specific (or Pi glass) or the general glass depending on how the glasses were formed. A Pi glass was formed by lowering temperature under a constant pressure (Pi) and the pressure dependency of the Pi glass was determined after changing pressure only in the glassy state. The general glass consists of a series of specific glasses but the Tg is determined only at pressures under which the glass is formed. The Tg for both glasses increased with increasing pressure. However, the Tg for the Pi glass appears to level off at very high pressures while the Tg does not level off for the general glass. Thermodynamic analysis was made to show that for many general glasses dTg/dP=Δβ/(1+n)Δα holds, in which n=1 for Solithane and many other glasses. It is also shown that a modified Gibbs and DiMarzio theory can be used effectively to predict the observed experimental results.
机译:通过高压差热分析(​​HP-DTA)和电介质,确定了两种弹性体Solithane 113和3,3-双(叠氮甲基)氧杂环丁烷/四氢呋喃(BAMO / THF)的玻璃化转变温度Tg的压力依赖性。技术,最高8.5 kbar。取决于玻璃的形成方式,将弹性体的玻璃命名为特殊玻璃(或Pi玻璃)或普通玻璃。通过在恒定压力(Pi)下降低温度来形成Pi玻璃,并且仅在玻璃态下改变压力之后确定Pi玻璃的压力依赖性。普通玻璃由一系列特定的玻璃组成,但Tg仅在形成玻璃的压力下确定。两种玻璃的Tg随着压力的增加而增加。但是,Pi玻璃的Tg似乎在非常高的压力下会趋于平稳,而普通玻璃的Tg不会趋于平稳。进行热力学分析表明,对于许多普通玻璃而言,dTg / dP =Δβ/(1 + n)Δα成立,其中,Solithane和其他许多玻璃的n = 1。还表明,改进的Gibbs和DiMarzio理论可以有效地用于预测观察到的实验结果。

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    《Journal of Applied Physics》 |1984年第9期|P.2426-2432|共7页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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