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A systematic methodology for creep master curve construction using the stepped isostress method (SSM): a numerical assessment

机译:使用阶梯式异位法(SSM)的蠕变主曲线施工系统方法(SSM):数值评估

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摘要

Long-term creep of viscoelastic materials is experimentally inferred through accelerating techniques based on the time-temperature superposition principle (TTSP) or on the time-stress superposition principle (TSSP). According to these principles, a given property measured for short times at a higher temperature or higher stress level remains the same as that obtained for longer times at a lower temperature or lower stress level, except that the curves are shifted parallel to the horizontal axis, matching a master curve. These procedures enable the construction of creep master curves with short-term experimental tests.
机译:通过基于时间 - 温度叠加原理(TTSP)或时分应力叠加原理(TSP),通过加速技术进行实验推断粘弹性材料的长期蠕变。 根据这些原理,在较高温度或更高的应力水平下短时间测量的给定性能保持与在较低温度或更低的应力水平下更长的时间获得的特性,不同之处在于曲线平行于水平轴移动, 匹配主曲线。 这些程序使得蠕变主曲线的构建具有短期实验测试。

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