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Thermal conductivity, specific heat, and dynamic mechanical behavior of diglycidyl ether of bisphenol a cured withm‐phenylenediamine

机译:间苯二胺固化双酚A的二缩水甘油醚的导热系数、比热和动态力学行为

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AbstractThe thermal conductivity, specific heat, and dynamic mechanical behavior of an epoxide system have been investigated over a relatively wide temperature range. Effects of nonstoichiometric amine concentrations and postcure heat treatments were included in the study. The thermal conductivity behavior was found to be related to the extent of cure of the poxy system, but in general the results were typical of an amorphous polymer. Calorimetric determinations were used to study the curing reaction and the glasslike transition temperature for the various systems. Dynamic mechanical results were employed to delinearte the various internal relaxations of the cured materials and in some instances to permit correlation of relaxations with the thermal conductivity and the specific heat results. From comparison of present results to those of a previous paper, the activation energy for the relaxation process occurring near 270°K has been estimated to be 16 kcal/mole
机译:摘要 在较宽的温度范围内研究了环氧化物体系的导热系数、比热和动态力学行为。该研究包括非化学计量胺浓度和固化后热处理的影响。发现导热性行为与poxy体系的固化程度有关,但总的来说,结果是非晶态聚合物的典型结果。量热法用于研究各种体系的固化反应和玻璃状转变温度。采用动态力学结果来描述固化材料的各种内部松弛,并在某些情况下允许弛豫与热导率和比热结果相关联。根据本论文与前一篇论文的比较,在270°K附近发生的弛豫过程的活化能估计为16 kcal/mole

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