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A thermomechanical investigation of highly cold‐drawn polycarbonate

机译:高冷拔聚碳酸酯的热力学研究

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AbstractA new technique detecting molecular motions in drawn polymers was applied to highly cold‐drawn polycarbonate of bisphenol A. It is shown that the sample exhibits thermal shrinkage in three steps with the temperature increase up to above the glass transition temperature. The molecular relaxation at the highest temperature is due to the glass transition. The other two molecular motions at the lower temperature are those of main chain in the glassy state and they correspond to the molecular motions as revealed in dielectric measurement by Sacher.1By using the general theory of the thermal analysis by Ozawa,2the apparent activation energies of these molecular motions were obtained: for the highest temperature 110 kcal/mole, and for the lowest temperature, 33.5 kcal/mole. The impact strength and the cold workability of this polymer are also discussed in relation to these molecular motion
机译:摘要将一种检测拉伸聚合物中分子运动的新技术应用于双酚A的高度冷拔聚碳酸酯。结果表明,随着温度升高至玻璃化转变温度以上,样品分三个步骤表现出热收缩。最高温度下的分子弛豫是由于玻璃化转变。另外两个分子在较低温度下的运动是玻璃状主链的运动,它们对应于Sacher在介电测量中揭示的分子运动.1通过使用Ozawa热分析的一般理论,2获得了这些分子运动的表观活化能:对于最高温度110 kcal/mole, 最低温度为 33.5 大卡/摩尔。还讨论了这种聚合物的冲击强度和冷加工性与这些分子运动的关系

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