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Experimental investigations in embedded sensing of composite components in aerospace vehicles

机译:航天飞行器复合部件嵌入式传感的实验研究

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This paper summarizes the experimental investigations for smart embedded sensing in rotorcraft composite components. The overall objective of this effort was to develop smart embedded sensor technologies for condition based maintenance (CBM) for composite components in army rotorcraft. This paper presents the results of experimental investigations related to development and maturation of different types of embedded sensing solutions for structural health monitoring of composite components including Fiber Bragg Grating (FBG) sensors, phased and discrete piezoelectric sensor arrays. A discussion is provided relative to embedment of optical fibers into composites, and the results from embedded FBG sensors in a rotorcraft flexbeam subcomponent test specimen with seeded delamination subjected to dynamic loading. Likewise, results are analyzed of surface mounted phased array and embedded smart piezoelectric sensors in the flexbeam subcomponent test specimen with embedded delamination, subjected to fatigue cyclic loading. The paper also summarizes the lessons learned from efforts to nucleate and propagate delamination within composite components under dynamic cyclic loading.
机译:本文总结了旋翼航空器复合材料组件中智能嵌入式传感技术的实验研究。这项工作的总体目标是开发智能嵌入式传感器技术,用于陆军旋翼飞机复合部件的基于状态的维护(CBM)。本文介绍了与不同类型的嵌入式传感解决方案相关的实验研究结果,这些嵌入式传感解决方案用于复合组件的结构健康监测,包括光纤布拉格光栅(FBG)传感器,相控和离散压电传感器阵列。提供了有关将光纤嵌入复合材料的讨论,以及在动态载荷作用下带有种子分层的旋翼航空器柔性梁子组件测试样品中嵌入的FBG传感器的结果。同样,在疲劳循环载荷作用下,在带有嵌入式分层的flexbeam子组件测试样本中,分析了表面安装相控阵和嵌入式智能压电传感器的结果。本文还总结了在动态循环载荷下从复合材料组件中形核和传播分层中获得的经验教训。

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