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Laser-generated Ultrasonic Technique for Inspecting Delamination in CFRP

机译:激光产生的超声波技术在CFRP中检测分层

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For improving quality of a carbon fiber reinforced composite material (CFRP) by preventing defects such as delamination and void, it should be inspected in fabrication process. Novel non-contacting evaluation technique is required because the transducer should be contacted on the CFRP in conventional ultrasonic technique during the non-destructive evaluation and these conventional contact techniques can not be applied in a novel fiber placement system. For the non-destructive evaluation of delamination in CFRP, various methods for the generation and reception of laser-generated ultrasound are applied using piezoelectric transducer, air-coupled transducer, wavelet transform technique etc. The high frequency component of laser-generated guided wave received with piezoelectric sensor disappeared after propagating through delamination region. Air-coupled transducer was tried to be adopted in reception of laser-generated guided wave generated by using linear slit array in order to generate high frequency guided wave with a frequency of 1.1 MHz. Nevertheless, it was failed to receive high frequency guided wave in using air-coupled transducer and linear slit array. Transmitted laser-generated ultrasonic wave was received on back-wall and its frequency was analyzed to establish inspecting technique to detect delamination by non-contact ultrasonic method. In a frequency spectrum analysis, intensity ratio of low frequency and center frequency was approvable parameter to detect delamination.
机译:通过防止诸如分层和空隙等缺陷来改善碳纤维增强复合材料(CFRP)的质量,应在制造过程中进行检查。需要新的非接触评估技术,因为在非破坏性评估期间应在传统的超声波技术中与CFRP接触换能器,并且这些传统的接触技术不能应用于新型纤维放置系统。对于CFRP中的分层的非破坏性评估,使用压电换能器,空气耦合换能器,小波变换技术等应用用于产生和接收激光产生的超声的方法。接收激光产生的引导波的高频分量通过分层区域传播后压电传感器消失。试图在通过使用线性狭缝阵列产生的激光产生的引导波的接收中采用空气耦合换能器,以便产生具有1.1 MHz的频率的高频导波。然而,使用空气耦合换能器和线性狭缝阵列未能接收高频导向波。在后壁上接收透射激光产生的超声波,并分析其频率以建立通过非接触超声波方法检测分层的检查技术。在频谱分析中,低频和中心频率的强度比是可获得的参数来检测分层。

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