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Effect of Voltage Measurement on the Quantitative Identification of Transverse Cracks by Electrical Measurements

机译:电压测量对电学测量横向裂纹定量识别的影响

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摘要

Electrical tomography can be used as a structural health monitoring technique to identify different damage mechanisms in composite laminates. Previous work has established the link between transverse cracking density and mesoscale conductivity of the ply. Through the mesoscale relationship, the conductivity obtained from electrical tomography can be used as a measure of the transverse cracking density. Interpretation of this measure will be accurate provided the assumptions made during homogenization are valid. One main assumption of mesoscale homogenization is that the electric field is in the plane. Here, we test the validity of this assumption for laminates with varying anisotropy ratios and for different distances between the cracked ply and surface that is instrumented with electrodes. We also show the equivalence in electrical response between measurements from cracked laminates and their equivalent mesoscale counterparts. Finally, we propose some general guidelines on the measurement strategy for maximizing the accuracy of transverse cracks identification.
机译:体层摄影术可以用作结构健康监测技术,以识别复合材料层压板中的不同损伤机理。先前的工作已经建立了横向裂纹密度与层的中尺度电导率之间的联系。通过中尺度关系,从电层析成像获得的电导率可以用作横向裂纹密度的量度。如果在均质化期间所做的假设有效,则此度量的解释将是准确的。中尺度均匀化的一个主要假设是电场在平面内。在这里,我们测试这种假设对于具有不同各向异性比率的层压板以及在开裂的板层和装有电极的表面之间的不同距离的层压板的有效性。我们还显示了裂纹层压板的测量值与其等效的中尺度对应物之间的电响应等效性。最后,我们提出了一些有关最大程度地提高横向裂缝识别精度的测量策略的指导原则。

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