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Effects of temperature and fiber volume fraction on mechanical properties of T300/QY8911-IV composites

机译:温度和纤维体积分数对T300 / QY8911-IV复合材料力学性能的影响

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摘要

The response of QY8911-IV resin matrix and T300/QY8911 composite laminates at elevated temperatures was investigated systematically. The mechanical properties and failure mechanism in resin matrix and composites with various fiber volume fractions were also perceived. Based on the experimental results, the corresponding mechanical models were established to describe the relationships between mechanical properties and fiber volume fraction at different temperatures. Test results show that the longitudinal modulus and strength have a low relevance to temperature, whereas the transverse and in-plane shear properties decrease dramatically with the increase of temperature as the result of the softening of resin matrix. Additionally, the influence of temperature on the properties mentioned above is more obvious than that of fiber volume fraction. Finally, several new predictive models were proposed and proved to be satisfactorily acceptable.
机译:系统地研究了QY8911-IV树脂基体和T300 / QY8911复合层压板在高温下的响应。还观察到了具有不同纤维体积分数的树脂基体和复合材料的力学性能和破坏机理。根据实验结果,建立了相应的力学模型来描述不同温度下力学性能与纤维体积分数之间的关系。测试结果表明,纵向模量和强度与温度的相关性较低,而横向和平面内的剪切性能由于树脂基质的软化而随温度的升高而急剧下降。另外,温度对上述性能的影响比纤维体积分数的影响更明显。最后,提出了几种新的预测模型,并证明它们令人满意。

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