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Feasibility studies on microwave heating for nondestructive evaluation of glass fibre reinforced plastic composites

机译:微波加热对玻璃纤维增​​强塑料复合材料进行无损评估的可行性研究

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Recent developments in non-destructive evaluation (NDE) have concentrated in two directions: 1) sensors and arrays for local material/defect detection at both macro and/or micro levels; 2) large-scale component imaging and monitoring such as thermography. In this paper, microwave heating is proposed for defect detection of glass fibre reinforced plastic (GFRP) composite material in far field. Such system using rectangular waveguide as illumination device is implemented and compared via both numerical simulation and experiment. In experiment, a GFRP wind turbine blade is chosen as test sample. Results for GFRP blade from simulation and experiment show that heat is accumulated at defect edge regions. This phenomenon enables defect detection using microwave heating. To achieve better contract of heat patterns at defect and non-defect region, a high power heating system is proposed. Simulation and experimental results show the feasibility of the system for defect detection with enough heat generation.
机译:非破坏性评估(NDE)的最新发展集中在两个方向:1)用于宏观和/或微观水平的局部材料/缺陷检测的传感器和阵列; 2)大型零件成像和热成像监控。提出了微波加热在远场玻璃纤维增​​强复合材料的缺陷检测中的应用。通过数值模拟和实验,实现并比较了使用矩形波导作为照明装置的系统。在实验中,选择了GFRP风力涡轮机叶片作为测试样品。通过仿真和实验得出的GFRP叶片的结果表明,热量聚集在缺陷边缘区域。该现象使得能够使用微波加热来检测缺陷。为了实现缺陷区域和非缺陷区域的热模式更好的收缩,提出了一种高功率加热系统。仿真和实验结果表明,该系统在产生足够热量的情况下进行缺陷检测的可行性。

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