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首页> 外文期刊>Measurement Science & Technology >Detection of internal defects in metal fibre composite materials using double-waveguide probe loaded with split-ring resonators
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Detection of internal defects in metal fibre composite materials using double-waveguide probe loaded with split-ring resonators

机译:使用分流环谐振器的双波导探针检测金属纤维复合材料中的内部缺陷

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Metal fibre composite materials, for instance turbine blades and other structural components, arc extensively employed in not just aerospace but also transportation and other fields. Nevertheless, composite materials are prone to forming defects in the fracture and loss of internal metal fibres, and the defects are expected to impact the performance of structural parts. The current paper puts forward a double-waveguide probe with split-ring resonators for microwave testing, operating at 11.5 GHz for the purpose of detecting fractures and the loss of internal metal fibres in composite materials. The split-ring resonator is capable of remarkably augmenting the electric field intensity in the detection area as compared with the original waveguides; in addition, the double waveguides have the potential to make use of the peak width of the S parameter for the characterization of the defects. The experimental and simulation results verify that the double waveguide probe is capable of precisely detecting internal defects in metal fibre composite materials.
机译:金属纤维复合材料,例如涡轮叶片和其他结构部件,弧线不仅仅是航空航天,而且是运输和其他领域。然而,复合材料容易形成骨折和内部金属纤维的损失中的缺陷,并且预期缺陷会影响结构部件的性能。目前纸张将双波导探头提出了具有用于微波检测的分体环谐振器,以11.5GHz操作,以检测复合材料中的裂缝和内部金属纤维的损失。与原始波导相比,分流环谐振器能够显着增强检测区域中的电场强度;另外,双波导具有使用S参数的峰宽以用于表征缺陷的峰值。实验和仿真结果验证双波导探针能够精确地检测金属纤维复合材料中的内部缺陷。

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