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Hydrothermal aging of friction riveted thermoplastic composite joints for aircraft applications

机译:用于飞机应用的摩擦铆接热塑性复合接头的水热老化

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摘要

In this paper, the sensitivity of carbon fiber reinforced polyether-ether-ketone friction riveted joints to hydrothermal aging was assessed, addressing the degradation mechanisms and post-aged quasi-static mechanical behavior of the joints. The joints were exposed to 71 degrees C and 95% relative humidity for 28 days. Despite the oxidation of the metallic nut and washer as well as cavitation and degradation of the composite, a 23% increase of joint mechanical performance was observed after 28 days of exposure. It is believed that the temperature and water uptake drove matrix post-crystallization at the surface of the fibers, which led to local strengthening of the composite in the rivet surrounding and, consequently, improved the joint residual strength.
机译:在本文中,评估了碳纤维增强聚醚 - 醚 - 酮摩擦铆接与水热老化的敏感性,解决了接头的降解机制和后老化的准静态力学行为。接头暴露于71℃和95%相对湿度28天。尽管金属螺母和垫圈的氧化以及复合材料的空化和降解,但在暴露28天后观察到接头机械性能的23%增加。据信,温度和水吸收在纤维表面的结晶后驱动矩阵,这导致铆钉中的复合材料的局部强化,从而提高了关节残余强度。

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