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Structural Health Monitoring of Composite Overwrap Pressure Vessel

机译:复合材料外包装压力容器的结构健康监测

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Composite Overwrap Pressure Vessel (COPV) has increasingly been used in many structural systems for automobile, aerospace, and aeronautical applications. The composite overwrap increases the pressure carrying capacity of the vessel without adding too much weight on the tank. The composite overwrap is typically in the form of laminates with multiple layers of uni-directional carbon fibers. This class of composite material is relatively new to the engineering communities and their material behaviors are not as well understood as traditional materials such as metals and metallic alloys. To ensure safe operation of the structural system consisting COPV, an on-line automatic structural health monitoring system is needed to constantly monitor the performance of the structure. Many structural health monitoring techniques have been proposed. Most of these techniques are based upon the global or local dynamic characteristics of the structure or the material. The structural health monitoring system identifies the changes in the global or local dynamic characteristics and issues warnings or trigger structural control system to bring the structural performance back to normal. This kind of hybrid sensing/control system can be achieved by using proper smart materials such as the piezoceramics. The paper presents experimental and numerical results of dynamic analysis of COPV and the results of temperature dependency tests on the performance of piezoelectric transducers for the structural health monitoring on composite laminates. On-going research using smart piezoelectric material to serve as the actuator and sensor for a structural health monitoring system for COPV are discussed in the paper.
机译:复合材料外包装压力容器(COPV)已越来越多地用于汽车,航空航天和航空应用的许多结构系统中。复合材料外包装可增加容器的压力承受能力,而不会增加罐体的重量。复合材料外包装通常为具有多层单向碳纤维的层压板形式。这类复合材料对工程界来说相对较新,其材料性能还不如金属和金属合金等传统材料好。为了确保由COPV组成的结构系统的安全运行,需要一个在线的自动结构健康监测系统来不断监测结构的性能。已经提出了许多结构健康监测技术。这些技术大多数基于结构或材料的整体或局部动态特性。结构健康监测系统识别整体或局部动态特性的变化,并发出警告或触发结构控制系统以使结构性能恢复正常。这种混合感测/控制系统可以通过使用适当的智能材料(例如压电陶瓷)来实现。本文介绍了COPV动态分析的实验和数值结果,以及温度对压电换能器性能的依赖性测试结果,该换能器用于复合材料层压板的结构健康监测。本文讨论了使用智能压电材料作为COPV结构健康监测系统的执行器和传感器的持续研究。

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