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Investigation of the viscoelastic response of high temperature AS4-12K/RP46 composites using a micromechanical approach

机译:使用微机械方法研究高温AS4-12K / RP46复合材料的粘弹性响应

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The viscoelastic behavior of a RP46 polyimide resin is characterized at high temperature and the results are used within a micromechanical model to predict the viscoelastic response of a RP46 based carbon fiber composite. The creep master curve of the neat resin is obtained using the time temperature superposition principle (TTSP) from creep tests at three different temperatures, namely 180, 220, and 270 degrees C. The viscoelastic behavior of RP46 is modeled based on Schapery's single integral constitutive equation whose Prony Series coefficients are obtained from the master curve. The acquired properties are then incorporated into a Simplified Unit Cell Micromechanical model to study the creep response of a RP46 resin based composite system. The advantage of this particular micromechanical model lies in its ability to give closed form expressions for the effective viscoelastic response of unidirectional composites as well as each of their constituents. Two types of nonlinearities were observed, one due to stress and the other due to temperature. Both of these nonlinearities can be modeled through the use of proper coefficients in the constitutive equation of the matrix material. The model predictions are found to be in good agreement with experimental results obtained from tests conducted on the RP46 resin based composite system. POLYM. COMPOS., 37:1407-1414, 2016. (c) 2014 Society of Plastics Engineers
机译:在高温下表征RP46聚酰亚胺树脂的粘弹性行为,并将结果用于微力学模型中,以预测RP46基碳纤维复合材料的粘弹性响应。使用时间温度叠加原理(TTSP)从180、220和270℃这三个不同温度下的蠕变测试中获得了纯树脂的蠕变主曲线。RP46的粘弹性行为是基于Schapery的单个整体本构模型进行建模的该方程的Prony级数系数是从主曲线获得的。然后将获得的特性合并到简化的晶胞微力学模型中,以研究基于RP46树脂的复合系统的蠕变响应。这种特殊的微机械模型的优点在于,它能够为单向复合材料及其每个成分的有效粘弹性响应提供闭合形式的表达式。观察到两种非线性,一种是由于应力,另一种是由于温度。这两种非线性都可以通过在基质材料的本构方程中使用适当的系数来建模。发现模型预测与在基于RP46树脂的复合系统上进行的测试获得的实验结果非常吻合。 POLYM。 COMPOS。,37:1407-1414,2016.(c)2014年塑料工程师学会

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