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Assessment of the stepped isostress method in the prediction of long term creep of thermoplastics

机译:预测热塑性塑料长期蠕变的阶梯式等应力法的评估

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摘要

To predict long term creep of thermoplastics, methods based on the time-temperature superposition principle (TTSP) or on the time-stress superposition principle (TSSP) are commonly used. These methods enable the construction of a creep master curve without a lengthy experimental program. Recently, a new accelerated creep testing method, termed the stepped isostress method (SSM), was proposed and used to predict long term creep of technical yarns. This paper focuses on the processing aspects of the SSM test data and its validity in the creep prediction of thick thermoplastic specimens. Excellent correlation is obtained between the master curves constructed by the classical TSSP method and those constructed by the SSM method. The variation of the SSM testing parameters has no significant effect on the obtained master curves, which constitutes proof of the SSM robustness. Further, the trend of the SSM shift factors in terms of the creep stress obeys the Eyring equation.
机译:为了预测热塑性塑料的长期蠕变,通常使用基于时间-温度叠加原理(TTSP)或基于时间-应力叠加原理(TSSP)的方法。这些方法无需冗长的实验程序即可构建蠕变主曲线。最近,提出了一种新的加速蠕变测试方法,称为分步等应力法(SSM),用于预测工业用纱的长期蠕变。本文着重于SSM测试数据的处理方面及其在厚热塑性样品蠕变预测中的有效性。通过经典TSSP方法构造的主曲线和通过SSM方法构造的主曲线之间获得了极好的相关性。 SSM测试参数的变化对获得的主曲线没有显着影响,这构成了SSM鲁棒性的证明。此外,就蠕变应力而言,SSM位移因子的趋势服从Eyring方程。

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