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Relation of Tensile Strength to Brittle Temperature in Plasticized Polymers

机译:增塑聚合物的拉伸强度与脆性温度的关系

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摘要

Since both the second‐order transition temperature and the tensile strength of plasticized polymers decrease linearly with plasticizer content, and frequently in inverse proportion to the molecular weight of the plasticizer, it was predicted that a linear relationship should exist between tensile strength and transition temperature for plasticized polymers, independent of the nature of the plasticizer. Tensile strength versus heat distortion for four different plasticizers in polystyrene follows this prediction very well. However, tensile strength versus brittle temperature for plasticized Vinylite VYNW gives a different straight line for each plasticizer. It is suggested that the diffusion rate of a plasticizer molecule is important in the fast brittle point test. The hypothesis is proposed that the brittle temperature of a plasticized polymer represents an isodiffusion constant state. It follows on the basis of some semi‐empirical equations that the brittle temperature should decrease linearly with plasticizer content, and inversely as the activation energy for diffusion of the plasticizer molecule in the plasticized polymer. This latter prediction appears in accord with existing data. This diffusion concept allows one to predict that the brittle temperature should increase linearly with logarithm of frequency of the test, but inversely as the activation energy for diffusion.
机译:由于二阶转变温度和增塑聚合物的拉伸强度都随增塑剂含量的增加而线性降低,并且通常与增塑剂的分子量成反比,因此可以预测,拉伸强度与转变温度之间应存在线性关系。增塑的聚合物,与增塑剂的性质无关。聚苯乙烯中四种不同增塑剂的拉伸强度与热变形的关系非常符合该预测。但是,增塑Vinylite VYNW的拉伸强度与脆性温度的关系为每种增塑剂提供了不同的直线。建议在快速脆点测试中增塑剂分子的扩散速率很重要。提出的假设是,增塑聚合物的脆性温度代表等扩散常数状态。因此,根据一些半经验方程式,脆性温度应随增塑剂含量线性降低,而与增塑剂分子在增塑聚合物中扩散的活化能成反比。后一种预测与现有数据一致。这种扩散的概念使人们可以预测,脆性温度应随测试频率的对数线性增加,而与扩散的激活能成反比。

著录项

  • 来源
    《Journal of Applied Physics》 |1951年第6期|共7页
  • 作者

    Boyer R. F.;

  • 作者单位

    The Dow Chemical Company, Midland, Michigan;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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