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Impact damage monitoring in CFRP using fiber Bragg grating ultrasound sensors

机译:使用光纤布拉格光栅超声传感器监测CFRP中的冲击损伤

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Impact damage in CFRP was monitored by ultrasonic inspection method using small-diameter fiber Bragg grating (FBG) sensors. The FBG ultrasound detection system consisted of broadband light source, FBG sensor and tunable optical filter. Broadband light was launched into the FBG sensor. Light reflected from the FBG sensor was transmitted through the tunable optical filter whose transmissive wavelength range is comparable to the reflected wavelength range of the FBG sensor. The operating wavelength of tunable filter was set to optimize the sensitivity of ultrasound detection. Ultrasound vibration was converted into change in intensity of light transmitted through the filter. A cross-ply carbon fiber-reinforced plastic (CFRP) plate was used as a test specimen for impact damage monitoring. A 6.3 X 9mm~2 impact damage was introduced by ball dropping. Both FBG ultrasound sensor and piezoelectric ultrasound transmitter were attached on the CFRP surface. The change in responses to ultrasound excited by either spike signal or toneburst signal before and after impact damage was investigated. In response to ultrasound excited by spike signal, the response after impact damage showed a scattered behavior where the period of response signal got longer. In response to ultrasound excited by toneburst signal, damage signal features scattered and distorted waveform. Experimental results proved that the FBG inspection system could monitor a 6.3 X 9mm~2 impact damage in CFRP.
机译:CFRP的冲击损伤通过使用小直径光纤布拉格光栅(FBG)传感器的超声检查方法进行监测。 FBG超声波检测系统由宽带光源,FBG传感器和可调滤光器组成。宽带光发射到FBG传感器中。从FBG传感器反射的光通过可调谐滤光器传输,该滤光器的透射波长范围与FBG传感器的反射波长范围相当。设置可调滤光片的工作波长以优化超声检测的灵敏度。超声振动被转换成透射通过滤光片的光强度的变化。交叉碳纤维增强塑料(CFRP)板用作冲击破坏监测的测试样本。落球造成6.3 X 9mm〜2的冲击损伤。 FBG超声传感器和压电超声发射器均安装在CFRP表面。研究了冲击损伤前后由尖峰信号或音爆信号激发的超声响应的变化。响应于尖峰信号激发的超声,冲击损伤后的响应表现出分散的行为,其中响应信号的周期变长。响应于突发音信号激发的超声波,损伤信号具有分散和失真的波形。实验结果证明,FBG检测系统可以监测CFRP的6.3 X 9mm〜2冲击破坏。

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