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Glass transition of elastomers using thermal analysis techniques

机译:使用热分析技术的弹性体的玻璃化转变

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The paper defines the glass transition temperature (T{sub}g) of elastomers using various thermal analysis techniques (differential scanning calorimetry, DSC; derivative DSC; thermomechanical analysis, TMA; dynamic mechanical analysis, DMA; dielectric analysis, DEA; thermal stimulated current, TSC) and compares T{sub}g values of eight elastomers by the first four techniques. Comparison of T{sub}g by two TMA methods (expansion and penetration) is also included. Necessary information regarding both the specific technique and the sample used to compare published data is mentioned. Their inclusion, along with the T{sub}g data, is emphasized. Correlation of T{sub}g, as determined by thermal methods with that determined by an industrial low-temperature test method (ASTMD 1053-89a) is discussed. The factors that are unique to elastomer T{sub}g determination, such as subambient operation, as compared to other polymers, are pointed out.
机译:本文使用各种热分析技术(差示扫描量热法,DSC;导数DSC;热机械分析,TMA;动态机械分析,DMA;介电分析,DEA;热激发电流)定义了弹性体的玻璃化转变温度(T {sub} g)。 (TSC),并通过前四种技术比较八个弹性体的T {sub} g值。还包括通过两种TMA方法(扩展和渗透)比较T {sub} g。提到了有关特定技术和用于比较已发布数据的样本的必要信息。强调将它们与T {sub} g数据一起包含在内。讨论了通过热法确定的T {g}与通过工业低温测试方法(ASTMD 1053-89a)确定的T {sub} g的相关性。指出了弹性体T g确定的独特因素,例如与其他聚合物相比的低于室温的操作。

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