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On the detectability of transverse cracks in laminated composites through measurements of electrical potential change

机译:通过测量电势变化来检测层压复合材料中横向裂纹的可检测性

摘要

For structures made of laminated composites, real-time structural health monitoring is necessary as significant damage may occur without any visible signs on the surface. Inspection by electrical tomography seems a viable approach as the technique relies on voltage measurements from a network of electrodes over the boundary of the inspected domain to infer the change in conductivity within the bulk material. The change in conductivity, if significant, can be correlated to the degradation state of the material, allowing damage detection. We focus here on the detection of the transverse cracking mechanism which modifies the in-plane transverse conductivity of ply. The quality of detection is directly related to the sensitivity of the voltage measurements with respect to the presence of cracks. We demonstrate here from numerical experiments that the sensitivity depends on several parameters, such as the anisotropy in the electrical conductivity of the baseline composite ply or the geometricalparameters of the structure. Based on these results, applicability of electrical tomography to detect transverse cracks in a laminate is discussed.
机译:对于由层压复合材料制成的结构,必须进行实时结构健康监测,因为可能会发生重大损坏,而表面上没有任何可见的迹象。通过电子断层扫描进行检查似乎是一种可行的方法,因为该技术依赖于来自被检查区域边界上的电极网络的电压测量值,以推断散装材料内电导率的变化。如果电导率的变化很大,则可以将其与材料的降解状态相关联,从而可以进行损坏检测。在此,我们将重点放在检测横向裂纹机理上,该机理会改变板层的平面内横向电导率。检测的质量直接与电压测量相对于裂纹的敏感性有关。我们从数值实验中证明,灵敏度取决于几个参数,例如基线复合层的电导率各向异性或结构的几何参数。基于这些结果,讨论了电层析成像技术在检测层压板中横向裂纹方面的适用性。

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