首页> 外文会议>Smart Materials IV; Proceedings of SPIE-The International Society for Optical Engineering; vol.6413 >Highly Reliable Advanced Grid Structures (HRAGS) for Aircraft Structures using Multi-point FBG Sensor
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Highly Reliable Advanced Grid Structures (HRAGS) for Aircraft Structures using Multi-point FBG Sensor

机译:使用多点FBG传感器的飞机结构的高度可靠的高级网格结构(HRAGS)

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There is a growing demand for lightweight structures in aircraft systems for energy and cost savings. The authors have therefore continued development of the Highly Reliable Advanced Grid Structure (HRAGS) with the aim of application of the same to aircraft. HRAGS is provided with health monitoring functions that make use of Fiber Bragg Grating (FBG) sensors in advanced grid structures, which have been the focus of attention in recent years as lightweight structures. It is a new lightweight structural concept that enables lighter weight to be obtained while maintaining high reliability. This report describes the tests and evaluation of the Proto System conducted to verify experimentally the concept of the highly reliable advanced grid structure. The Proto System consists of a skin panel embedded with 29 FBG sensors and a wavelength detection system. The artificial damage to the skin panel of the specimen was successfully detected by comparing the strain distributions before and after the introduction of the damage measured by FBG sensors. Next, the application of HRAGS to the wing tip was studied. The results of the studies above are reported here.
机译:为了节省能源和成本,对飞机系统中的轻型结构的需求不断增长。因此,作者继续开发高度可靠的高级网格结构(HRAGS),旨在将其应用于飞机。 HRAGS具有运行状况监视功能,该功能在高级网格结构中使用光纤布拉格光栅(FBG)传感器,近年来,轻型结构已成为人们关注的焦点。它是一种新的轻量化结构概念,可以在保持高可靠性的同时获得更轻的重量。该报告描述了对Proto系统的测试和评估,以通过实验验证高度可靠的高级网格结构的概念。原型系统由嵌入29个FBG传感器的皮肤面板和一个波长检测系统组成。通过比较引入FBG传感器测量的损伤前后的应变分布,可以成功检测出对样品皮肤面板的人为损伤。接下来,研究了HRAGS在翼尖上的应用。上面的研究结果在这里报告。

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