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光纤/复合材料系统的结构稳定性分析
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作者 涂亚庆 张海涛 《后勤工程学院学报》 2001年第3期1-4,共4页
在光纤/复合材料结构中,埋入光纤传感器对整体结构稳定性提出了潜在的问题。本文基于国内外的研究现状,着重讨论了在几种典型负载情况下埋入光纤对基质结构系统整体结构稳定性的影响,并总结出一些有益的结论。
关键词 光纤/复合材料系统 结构稳定性 埋入光纤传感器
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Fiber Optic Interrogation Systems for Hypervelocity and Low Velocity Impact Studies
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作者 D. A. JACKSON M. J. COLE 《Photonic Sensors》 SCIE EI CAS 2012年第1期50-59,共10页
The aim of this project was to develop non-contact fiber optic based displacement sensors to operate in the harsh environment of a "light gas gun" (LGG), which can "fire" small particles at velocities ranging fr... The aim of this project was to develop non-contact fiber optic based displacement sensors to operate in the harsh environment of a "light gas gun" (LGG), which can "fire" small particles at velocities ranging from 1 km/s-8.4km/s. The LGG is used extensively for research in aerospace to analyze the effects of high speed impacts on materials. Ideally the measurement should be made close to the center of the impact to minimize corruption of the data from edge effects and survive the impact. We chose to develop a non-contact "pseudo" confocal intensity sensor, which demonstrated resolution comparable with conventional polyvinylidene fluoride (PVDF) sensors combined with high survivability and low cost. A second sensor was developed based on "fiber Bragg gratings" (FBG) to enable a more detailed analysis of the effects of the impact, although requiring contact with the target the low weight and very small contact area of the FBG had minimal effect on the dynamics of the target. The FBG was mounted either on the surface of the target or tangentially between a fixed location. The output signals from the FBG were interrogated in time by a new method. Measurements were made on carbon fiber composite plates in the LGG and on low velocity impact tests. The particle momentum for the low velocity impact tests was chosen to be similar to that of the particles used in the LGG. 展开更多
关键词 Intensity sensor FBG hypervelocity impacts composite high speed processing
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