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Interpretation of shift of relaxation time with deformation in glassy polymers in terms of excess enthalpy

机译:用过量焓解释玻璃态聚合物中弛豫时间的变化和变形

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摘要

The mechanical relaxation time in a glassy polymer depends on the magnitude of strain. The stress relaxation modulus of a styrene acrylonitrile and polybutadiene composite system (ABS) was measured at strains ranging from 0.005 to 0.10. The relaxation time was observed to shorten by up to four orders of magnitude. In addition, there was observed a decrease in the elastic contribution to the modulus. These two aspects of nonlinear viscoelasticity are interpreted in terms of the excess enthalpy associated with dilatation under strain, a crucial factor for ductile behavior and the formation of crazes. Up to 0.9 cal/g of the excess enthalpy associated with the stress‐induced dilatation is obtained from the differential scanning calorimetry study.
机译:玻璃态聚合物中的机械弛豫时间取决于应变的大小。在应变范围为0.005至0.10的范围内测量了苯乙烯丙烯腈和聚丁二烯复合体系(ABS)的应力松弛模量。观察到松弛时间缩短了多达四个数量级。另外,观察到对模量的弹性贡献降低。非线性粘弹性的这两个方面是根据与应变作用下的膨胀相关的过量焓来解释的,这是延性行为和裂纹形成的关键因素。通过差示扫描量热法研究可得到高达0.9 cal / g与应力引起的膨胀相关的过量焓。

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    《Journal of Applied Physics 》 |1973年第10期| 共4页
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  • 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);
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  • 正文语种 eng
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