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Effect of Entanglement Concentration on T_g in Polystyrene Samples

机译:纠缠浓度对聚苯乙烯样品中T_g的影响

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摘要

The calorimetric glass temperature of polystyrenes with molecular weights ranging from 3.0 x 10~3 to 43.7 x 10~6 g/mol are measured as a function of cooling rate for both bulk material and for samples freeze-dried from dilute solution. We find that T_g is depressed approximately 5 K for samples which can fully entangle and also the same amount for ultrahigh molecular weight samples which cannot achieve full entanglement. The lowest molecular weight samples show only 2 K depression on freeze-drying. Annealing eliminates the depression in T_g. The results indicate that the reduction of the glass temperature due to freeze-drying cannot be due to the reduced entanglement concentration induced by freeze-drying.
机译:对于散装材料和从稀溶液中冻干的样品,测量分子量为3.0 x 10〜3至43.7 x 10〜6 g / mol的聚苯乙烯的量热玻璃温度是冷却速率的函数。我们发现,对于完全缠结的样品,T_g降低了约5 K,对于无法完全缠结的超高分子量样品,T_g也降低了约5K。最低分子量的样品在冷冻干燥中仅显示出2 K的降低。退火消除了T_g的降低。结果表明,由冷冻干燥引起的玻璃温度的降低不能归因于由冷冻干燥引起的缠结浓度的降低。

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