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首页> 外文期刊>Applied composite materials >Influence of Copper Layer Content in the Elastic and Damping Behavior of Glass-Fiber/Epoxy-Resin Composites
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Influence of Copper Layer Content in the Elastic and Damping Behavior of Glass-Fiber/Epoxy-Resin Composites

机译:铜层含量在玻璃纤维/环氧树脂复合材料弹性和阻尼行为的影响

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摘要

The impact in the elastic behavior and internal friction, caused by the introduction of Copper layers in Glass-Fiber/Epoxy Resin composites and temperature effects, were studied and evaluated recurring to Dynamic Mechanical Analysis. It is shown that the introduction of Copper layers increases the storage modulus of the composites and delays their glass transition temperature, however, it allows a faster transformation. Additionally, it is concluded that the introduction of Copper layers elevates the internal friction during the glass transition phase by the inversion of the deformation mechanism due to thermal expansion and increase in the Poisson's ratio of the epoxy resin to a value near 0.5 where its deformation is approximately isochoric. This increase in damping capacity is relevant in application with cyclic fatigue and mechanical vibration.
机译:通过引入玻璃纤维/环氧树脂复合材料和温度效应引进铜层引起的弹性行为和内部摩擦的影响,并评估了动态力学分析。 结果表明,铜层的引入增加了复合材料的储存模量并延迟了它们的玻璃化转变温度,但是,它允许更快的转换。 另外,得出结论:引入铜层在玻璃化转变期间通过变形机构的反转引入内部摩擦,由于热膨胀,并将环氧树脂与泊松比的泊松比例增加到0.5附近的值近0.5的值 大约是等级的。 阻尼容量的增加在循环疲劳和机械振动的应用中是相关的。

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