首页> 外文会议>Conference on Smart Structures and Materials 2001: Smart Structures and Integrated Systems Mar 5-8, 2001, Newport Beach, USA >Development of Structural Health Monitoring Systems for Composite Bonded Repairs on Aircraft Structures
【24h】

Development of Structural Health Monitoring Systems for Composite Bonded Repairs on Aircraft Structures

机译:开发用于飞机结构复合修补的结构健康监测系统

获取原文
获取原文并翻译 | 示例

摘要

The application of bonded composite patches to repair or reinforce defective metallic structures is becoming recognised as a very effective versatile repair procedure for many types of problems. Immediate applications of bonded patches are in the fields of repair of cracking, localised reinforcement after removal of corrosion damage and for reduction of fatigue strain. However, bonded repairs to critical components are generally limited due to certification concerns. For certification and management of repairs to critical structure, the "Smart Patch" approach may be an acceptable solution from the airworthiness prospective and be cost effective for the operator and may even allow some relaxation of the certification requirements. In the most basic form of the "Smart Patch" in-situ sensors can be used as the nerve system to monitor in service the structural condition (health or well-being) of the patch system and the status of the remaining damage in the parent structure. This application would also allow the operator to move away from current costly time-based maintenance procedures toward real-time health condition monitoring of the bonded repair and the repaired structure. To this end a 'stand-alone' data logger device, for the real-time health monitoring of bonded repaired systems, which is in close proximity to sensors on a repair is being developed. The instrumentation will measure, process and store sensor measurements during flight and then allow this data to be up-loaded, after the flight, onto a PC, via remote (wireless) data access. This paper describes two in-situ health monitoring systems which will be used on a composite bonded patch applied to an F/A-18. The two systems being developed consists of a piezoelectric (PVDF) film-based and a conventional electrical-resistance foil strain gauge-based sensing system. The latter system uses a primary cell (Lithium-based battery) as the power source, which should enable an operating life of 1-2 years. The patch health data is up-loaded by the operator using an IR link. The piezoelectric film-based sensing system is self-powered and has been designed to operate using the electrical power generated by an array of piezoelectric films, which convert structural dynamic strain to electrical energy. These transducers power the electronics which interrogate the piezoelectric film sensors, and process and store the patch health data on non-volatile memory. In this system the patch health data is up-loaded by the operator using a magnetic transceiver. This paper describes the development and evaluation of the two systems, including issues such as system design and patch health monitoring techniques.
机译:对于许多类型的问题,将粘合的复合补片用于修复或增强有缺陷的金属结构的应用已被视为一种非常有效的通用修复程序。粘结贴剂的直接应用是在裂缝修复,去除腐蚀损伤后局部加固以及减轻疲劳应变的领域。但是,由于认证方面的考虑,关键部件的保税维修通常受到限制。对于关键结构维修的认证和管理,“适航补丁程序”方法可能是适航前景可接受的解决方案,并且对操作员而言具有成本效益,甚至可以放宽认证要求。在“智能补丁”的最基本形式中,可以将原位传感器用作神经系统,以在使用中监视补丁系统的结构状况(健康或福祉)以及母体中剩余伤害的状态结构体。该应用程序还将允许操作员从当前昂贵的基于时间的维护程序转向对结合的维修和被维修的结构进行实时健康状况监控。为此,正在开发一种“独立的”数据记录器设备,用于实时监测粘合修复系统的健康状况,该系统非常接近修复中的传感器。仪器将在飞行过程中测量,处理和存储传感器测量值,然后允许在飞行后通过远程(无线)数据访问将该数据上传到PC上。本文介绍了两种原位健康监测系统,这些系统将用于F / A-18上的复合粘结贴剂。正在开发的两个系统由基于压电(PVDF)薄膜的传感器和基于常规电阻箔应变计的传感系统组成。后一种系统使用一次电池(基于锂的电池)作为电源,应可实现1-2年的使用寿命。操作员使用IR链接上载补丁程序健康数据。基于压电膜的传感系统是自供电的,并且已设计为使用由压电膜阵列产生的电能进行操作,该压电膜将结构动态应变转换为电能。这些换能器为电子设备供电,这些电子设备会查询压电薄膜传感器,并将贴片健康数据处理并存储在非易失性存储器中。在该系统中,操作员使用磁收发器上传补丁的健康数据。本文介绍了这两个系统的开发和评估,包括系统设计和补丁运行状况监视技术等问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号