首页> 外文会议>International Workshop on Advanced Smart Materials and Smart Materials and Smart Structures Technology; 20040112-14; Hawaii,HI(US) >Feasibility Study of Damage Monitoring System using PZT Actuator/FBG Sensor for New Generation Aircraft
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Feasibility Study of Damage Monitoring System using PZT Actuator/FBG Sensor for New Generation Aircraft

机译:使用PZT执行器/ FBG传感器的新一代飞机损害监测系统的可行性研究

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This paper presents a feasibility study of a damage monitoring system using PZT actuators/FBG sensors for advanced composite material structures of new-generation aircrafts. To achieve weight reduction of the aircraft structure, these advanced composite materials have gradually been employed for the primary structure. It is expected that when these materials will be extensively employed, an efficient bonded structure such as a "hat-shaped stringer" will be utilized for the aircraft structure. However, these bonded structures have critical problems such as debonding and delamination at the interfaces of the laminate. On the other hand, when the main/tail wing section is designed with composite materials, a single-step molding process of the structure element is necessary in order to ensure low cost and affordability. However, this low cost process results in an increase in the non-destructive inspection (NDI) cost. Therefore, an innovative damage monitoring system is required for structural health management. The authors are developing a hybrid sensing system that can detect an elastic wave from a PZT actuator, using a high-speed and high-accuracy FBG sensor for active damage sensing. In this paper, the concept design of the main/tail wing box structure using this system is presented. The effectiveness of the system for aircraft structures is also discussed.
机译:本文介绍了使用PZT执行器/ FBG传感器对新一代飞机的高级复合材料结构进行的损害监测系统的可行性研究。为了减轻飞机结构的重量,这些先进的复合材料已逐渐用于主要结构。期望当这些材料被广泛使用时,有效的粘合结构,例如“帽形桁条”将用于飞机结构。然而,这些粘合结构具有严重的问题,例如在层压板的界面处的脱粘和分层。另一方面,当主翼/尾翼部段由复合材料设计时,为了确保低成本和可承受性,结构元件的单步成型工艺是必需的。但是,这种低成本的过程导致无损检测(NDI)成本增加。因此,结构健康管理需要创新的损坏监测系统。作者正在开发一种混合传感系统,该系统可以使用高速,高精度FBG传感器进行主动损伤传感,从而检测来自PZT执行器的弹性波。在本文中,提出了使用该系统的主/尾翼箱结构的概念设计。还讨论了该系统对飞机结构的有效性。

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