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Prediction of Long-term Creep of Composites from Doubly-shifted Polymer Creep Data

机译:从双位移聚合物蠕变数据预测复合材料的长期蠕变

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摘要

Environmental effects on the creep response of composites are of great interest because these materials are very sensitive to temperature and other environmental conditions. Short and long-term creep effects have been studied for composites under various environmental conditions, but most studies rely on experimental testing of particular laminates. Here, a novel micro-mechanical/laminate model is developed to predict the creep response of laminated polymer matrix composites from matrix creep data. Furthermore, a novel two-parameter super-position method is used to predict the long-term response of the polymer matrix as a function of two environmental parameters: moisture and temperature. The procedure used to compute the two shift factors is described. The resulting master curve can be used to predict the long-term properties of the matrix and for any temperature and humidity conditions. Once the matrix behavior is known, the micro-mechanical/laminate model allows for accurate prediction of long-term properties of arbitrary laminates for the same conditions.
机译:由于复合材料对温度和其他环境条件非常敏感,因此对复合材料的蠕变响应的环境影响引起了极大关注。已经研究了在各种环境条件下复合材料的短期和长期蠕变效应,但是大多数研究依赖于特定层压板的实验测试。在这里,开发了一种新型的微机械/层压模型,可以根据基体蠕变数据预测层压聚合物基复合材料的蠕变响应。此外,使用新颖的两参数叠加方法来预测聚合物基体的长期响应,这是两个环境参数的函数:湿度和温度。描述了用于计算两个移位因子的过程。所得的主曲线可用于预测基质以及任何温度和湿度条件下的长期特性。一旦了解了基质行为,微机械/层压板模型就可以在相同条件下准确预测任意层压板的长期性能。

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