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Microwave Measurements for Conductive Anisotropic Materials

机译:导电各向异性材料的微波测量

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摘要

Applications of anisotropic composite materials range from construction composites to electric circuit boards. Anisotropic conductivity is one of the many important measurands for anisotropic composites for identifying misalignment. However, there are only a few nondestructive, noncontact techniques available. Here, we explore waveguide ellipsometry, a new electromagnetic characterization technique, and its application to conductive anisotropic composites. We demonstrate waveguide ellipsometry and discuss the design and implementation of a novel rotation test head on a robotic arm. To validate our technique, we designed and fabricated test wafers with ideal anisotropic composites consisting of gold stripes on materials with varying sheet resistances. The measurements were compared to full-wave simulations with simulated material properties extracted with the help of composite theory and simple circuit analysis. We found a good match between the simulated and measured complex scattering (S-) parameters for all test wafers fabricated with molybdenum disilicide (MoSi2) and gold stripes. Finally, we map the measured S-parameters to simulated S-parameters with help from composite theory and circuit modeling. Broader impacts of microwave ellipsometry include in-line measurement and conductivity imaging of large-scale and 3-D parts for nondestructive evaluation.
机译:各向异性复合材料的应用范围从施工复合材料到电路板。各向异性电导率是用于识别未对准的各向异性复合材料的许多重要测量之一。但是,只有少数非破坏性的非联系技术可用。这里,我们探索波导椭圆形测定法,新的电磁表征技术及其在导电各向异性复合材料的应用。我们展示了波导椭圆形测定法,并讨论了机器人臂上的新型旋转试验头的设计和实现。为了验证我们的技术,我们设计和制造了具有理想的各向异性复合材料的测试晶圆,由具有不同薄片电阻的材料上由金条纹组成。将测量与借助复合理论提取的模拟材料性能和简单的电路分析进行了比较了测量。我们在用钼硅化钼(MOSI2)和金条纹制造的所有测试晶片的模拟和测量的复杂散射(S-)参数之间发现了良好的匹配。最后,我们通过复合理论和电路建模的帮助将测量的S参数映射到模拟的S参数。微波椭圆测定法的更广泛影响包括用于非破坏性评估的大规模和3-D部件的线测量和电导成像。

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