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Thermal analysis and degradation of properties in carbon fiber/epoxy laminate riveting at high temperatures

机译:高温下碳纤维/环氧树脂层压材料中性能的热分析和降解

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摘要

A riveting process was developed to fasten carbon fiber/epoxy composite laminates. This process heats a thermoplastic composite rivet blank placed into the joint hole, above melt temperature, to form a rivet fastening the joined components. This process poses a threat to the integrity of the structure's epoxy matrix. To verify the state of matrix degradation, a pin-loaded mechanical test was applied on composite test pieces heat treated at various temperatures. The heat treatment was specifically designed to recreate the riveting process thermal cycle. A finite element model of the heat treatment was produced to obtain the time and temperature exposure of the test piece during the heat treatment. For use in the finite element model, emissivity was characterized through infrared image analysis, and thermal conductivity was characterized with an inverse method. The results show that a riveting process at nominal temperature of 350 degrees C will not affect the bearing properties of the composite laminates. However, the process at 450 degrees C does affect the bearing properties.
机译:开发了一种铆接工艺以固定碳纤维/环氧复合层压材料。该方法将热塑性复合铆钉坯料加热到高于熔体温度,以形成紧固连接部件的铆钉。该过程对结构的环氧基质的完整性构成了威胁。为了验证矩阵劣化的状态,在各种温度处理的复合试验片上施加引脚加载的机械测试。热处理专门设计用于重建铆接过程热循环。制备了热处理的有限元模型,以在热处理期间获得试验片的时间和温度暴露。为了在有限元模型中使用,通过红外图像分析表征发射率,并且具有逆方法的热导率表征。结果表明,标称温度为350℃的铆接过程不会影响复合层压板的轴承性能。然而,450℃的过程确实影响了轴承性能。

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