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首页> 外文期刊>Journal of Composite Materials >Advanced accelerated testing methodology for long-term life prediction of CFRP laminates
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Advanced accelerated testing methodology for long-term life prediction of CFRP laminates

机译:先进的加速测试方法可预测CFRP层压板的长期使用寿命

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摘要

An advanced accelerated testing methodology (ATM-2) for long-term life prediction of CFRP laminates exposed to actual loading with a general stress and temperature history is proposed based on the conventional accelerated testing methodology (ATM-1) established for the long-term life prediction of CFRP laminates exposed to stress and temperature. The most important condition for ATM-1 is that the time-temperature superposition principle held for the viscoelastic behavior of matrix resin holds also for the static, creep, and fatigue strengths of CFRP laminates. Furthermore, three conditions that form the basis of ATM-2 are introduced along with their scientific bases. The long-term fatigue strength of CFRP laminates under an actual loading is formulated based on the three conditions. The viscoelastic coefficients of matrix resin, which perform an important role for the time and temperature dependence of long-term life of CFRP laminates, are also formulated based on the time-temperature superposition principle. The applicability of ATM-2 is demonstrated by predicting the long-term fatigue strengths of four typical directions of unidirectional CFRP laminates.
机译:基于为长期建立的常规加速测试方法(ATM-1),提出了一种先进的加速测试方法(ATM-2),用于对暴露于具有一般应力和温度历史的实际载荷的CFRP层压板进行长期寿命预测CFRP层压板在应力和温度下的使用寿命预测。 ATM-1的最重要条件是,对于基体树脂的粘弹行为而言,时间-温度叠加原理也对CFRP层压板的静态,蠕变和疲劳强度同样有效。此外,介绍了构成ATM-2基础的三个条件及其科学依据。 CFRP层压板在实际载荷下的长期疲劳强度是根据这三个条件制定的。根据时间-温度叠加原理,还可以得出基体树脂的粘弹性系数,该黏弹性系数对于CFRP层压板的长期使用寿命在时间和温度上起着重要的作用。通过预测单向CFRP层压板四个典型方向的长期疲劳强度,证明了ATM-2的适用性。

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