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Use of infrared thermography to investigate the fatigue behavior of a carbon fiber reinforced polymer composite

机译:红外热成像技术研究碳纤维增强聚合物复合材料的疲劳行为

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Thermography was used to investigate the fatigue behavior of a braided carbon fiber polymeric composite plate. A thermographic approach, originally developed in an earlier study for metallic alloys, was employed to rapidly determine the composite high cycle fatigue strength. The method yielded a fatigue threshold value that was in excellent agreement with that obtained through a conventional experimental test program. The damage mechanisms responsible for the increased heat dissipation and ultimately failure were identified, which provides support for the existence of a fatigue threshold for this material. An extension of the thermographic technique to rapidly determine the entire fatigue stress-life curve for the composite plate provided a direct correlation to the stress-life curve determined through a conventional test program. Energy dissipation was also used as an indicator to determine the high cycle fatigue strength, providing support for the thermographic approach. A relationship between the dissipated heat, the intrinsic energy dissipation and the number of cycles to failure has been clearly established.
机译:使用热成像技术研究了编织碳纤维聚合物复合板的疲劳行为。热成像方法最初是在较早的金属合金研究中开发的,用于快速确定复合材料的高周疲劳强度。该方法产生的疲劳阈值与通过常规实验测试程序获得的疲劳阈值非常吻合。确定了造成热量散发增加并最终导致故障的损坏机制,这为该材料存在疲劳阈值提供了支持。热成像技术的扩展,可以快速确定复合板的整个疲劳应力-寿命曲线,这与通过常规测试程序确定的应力-寿命曲线直接相关。能耗也被用作确定高周疲劳强度的指标,为热成像方法提供了支持。散热,固有能量耗散和故障循环次数之间的关系已明确建立。

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