首页> 外文会议>Annual Conference of the British Institute of Non-Destructive Testing >PROCESS MONITORING FOR RESINS, CARBON FIBER FABRICS, PREFORMS AND CONSOLIDATED CFRPS BY HF RADIO WAVE TECHNIQUES
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PROCESS MONITORING FOR RESINS, CARBON FIBER FABRICS, PREFORMS AND CONSOLIDATED CFRPS BY HF RADIO WAVE TECHNIQUES

机译:通过HF无线电波技术对树脂,碳纤维织物,预成型件和整合CFRP的过程监测

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Eddy current testing is well established for non-destructive testing of electrical conductive materials [1]. The development of radio frequency (RF) eddy current technology with frequency ranges up to 100 MHz made it possible to extend the classical fields of application even towards less conductive materials like CFRP [2][3]. It turns out that RF eddy current technology on CFRP generates a growing number of valuable information for comprehensive material diagnostic. Both permittivity and conductivity of CFRP influence the complex impedance measured with RF eddy current devices. The electrical conductivity contains information about fiber texture like orientations, gaps or undulations in a multilayered material. The permittivity characterization influenced by dielectric properties allows the determination of local curing defects on CFRP e.g. hot spots, thermal impacts or polymer degradation. An explanation for that effect is seen in the measurement frequency range and the capacitive structure of the carbon rovings. Using radio wave frequencies for testing, the effect of displacement currents cannot be neglected anymore. The capacitive structures formed by the carbon rovings is supposed to further strengthen the dielectric influences on eddy current measurement signal [3]. This report gives an overview of several realized applications and should be understood as a general introduction of CFRP testing by HF Radio Wave techniques.
机译:涡流探伤是公认的用于电的导电材料[1]的非破坏性测试。射频的发展(RF)涡流技术与频率范围高达100 MHz使得有可能甚至对较少的导电材料应用的经典领域延伸CFRP等[2] [3]。事实证明,RF涡对CFRP目前的技术产生了越来越多的综合材料的诊断有价值的信息。 CFRP的两个介电常数和电导率影响与RF涡流装置测得的复阻抗。电导率包含有关纤维质地等的取向,在多层材料的间隙或起伏的信息。由介电性能的影响介电常数表征允许在CFRP例如本地固化缺陷的判定热点,热冲击或聚合物降解。对于该效果的说明被认为是在测量频率范围和碳粗纱的电容结构。使用无线电波的频率进行检测,位移电流的效果不能再忽视。由碳粗纱形成的电容结构应该进一步加强涡流测量信号[3]所述电介质的影响。这份报告给出了几个实现应用程序的概述,并应当被理解为通过高频无线电波技术的一般性介绍CFRP测试。

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