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Health monitoring techniques for composite materials employing thermal parameters and fiber optic sensors

机译:采用热参数和光纤传感器的复合材料健康监测技术

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In this paper we investigate the performance of a SCS-6/Ti-15-3 composite system, a carbon/SiC woven composite system, and an AS4/3501-6 composite system, subjected to long term mechanical fatigue, with an extrinsic Fabry-Perot interferometric (EFPI) fiber optic strain sensor. Both stiffness reduction and the degradation of thermal expansion coefficient (TEC) are monitored. The obtained results show that the EFPI sensor provides reliable data during long term fatigue loading up to 1 million cycles. The results suggest that the EFPI sensor is a viable means to monitor current and proposed characteristic damage metrics for various composite systems. We also monitor the TEC degradation during the thermal fatigue of celion G30-500/PMR-15 woven cross-ply composite system, and present a simple micromechanical model, that employs a shear lag approach, utilized to predict the effect of matrix cracking on the TEC of the composite. Results show that good agreement between experimental data and theoretical results is obtained, and that this parameter changed by as much as 80% over the fatigue life of the composite.
机译:本文研究了SCS-6 / TI-15-3复合系统,碳/ SIC编织物复合系统和AS4 / 3501-6复合系统的性能,具有长期机械疲劳,具有外在法布里 - 运动干涉量(EFPI)光纤应变传感器。监测刚度降低和热膨胀系数(TEC)的降解。所得结果表明,EFPI传感器在长期疲劳负载期间提供可靠的数据,高达100万次循环。结果表明,EFPI传感器是监控各种复合系统的电流和提出的特征损伤度量的可行方法。我们还监测塞利亚G30-500 / PMR-15编织交叉层复合系统的热疲劳期间的TEC劣化,并呈现了一种简单的微机械模型,采用剪切滞后方法,用于预测基质裂缝对的影响复合的TEC。结果表明,获得了实验数据与理论结果之间的良好一致性,并且该参数在复合材料的疲劳寿命上变化多达80%。

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