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Design of intelligent composites with life-cycle health management capabilities

机译:生命周期健康管理能力智能复合材料设计

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Use of carbon fiber reinforced polymers (CFRPs) presents challenges because of their complex manufacturing processes and different damage mechanics in relation to legacy metal materials. New monitoring methods for manufacturing, quality verification, damage estimation, and prognosis are needed to use CFRPs safely and efficiently. This work evaluates the development of intelligent composite materials using integrated piezoelectric sensors to monitor the material during cure and throughout service life. These sensors are used to propagate ultrasonic waves through the structure for health monitoring. During manufacturing, data is collected at different stages during the cure cycle, detecting the changing material properties during cure and verifying quality and degree of cure. The same sensors can then be used with previously developed techniques to perform damage detection, such as impact detection and matrix crack density estimation. Real-time damage estimation can be combined with prognostic models to predict future propagation of damage in the material. In this work experimental results will be presented from composite coupons with embedded piezoelectric sensors. Cure monitoring and damage detection results derived from analysis of the ultrasonic sensor signal will be shown. Sensitive signal parameters to the different stimuli in both the time and frequency domains will be explored for this analysis. From these results, use of the same sensor networks from manufacturing throughout the life of the composite material will demonstrate the full life-cycle monitoring capability of these intelligent materials.
机译:碳纤维增强聚合物(CFRP)的使用具有挑战,因为它们具有与遗留金属材料相关的复杂制造工艺和不同的损伤力学。需要使用CFRPS安全有效地使用新的制造,质量验证,损伤和预后的监控方法。这项工作评估了使用集成压电传感器的智能复合材料的开发,以监测治愈过程中的材料和整个使用寿命。这些传感器用于通过用于健康监测的结构来传播超声波。在制造过程中,在固化循环期间在不同阶段收集数据,检测固化过程中的更换材料特性和验证质量和固化程度。然后可以与先前显影的技术一起使用相同的传感器以进行损坏检测,例如冲击检测和矩阵裂纹密度估计。实时损伤估计可以与预后模型组合,以预测材料损坏的未来传播。在该工作中,实验结果将从具有嵌入式压电传感器的复合优惠券提出。将显示防治监测和损伤检测结果,从而源自超声波传感器信号的分析。对于此分析,将探索在时间和频率域中的不同刺激的敏感信号参数。通过这些结果,在整个复合材料的整个寿命中使用相同的传感器网络将展示这些智能材料的全生命周期监测能力。

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