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首页> 外文期刊>Composite Structures >Deformation and interlaminar crack propagation sensing in carbon fiber composites using electrical resistance measurement
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Deformation and interlaminar crack propagation sensing in carbon fiber composites using electrical resistance measurement

机译:碳纤维复合材料的变形和层间裂纹扩展感应的电阻测量

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摘要

In this study, we propose analytical and experimental methods to predict and detect deformation and interlaminar crack propagation in carbon fiber-reinforced plastics (CFRPs) based on electrical resistance measurement. The electromechanical behavior of CFRP was investigated from the elastic region to crack propagation. The CFRPs were subjected to tensile, three-point bending, and Mode I dual cantilever beam loads, and the signature electromechanical response was correlated to subsequent deformations and crack propagation. The self-sensing investigation was extended to different fiber combinations and electrode placement schemes to obtain customized sensitivity. The experimental results were verified through finite element analysis. In parallel, equivalent electrical circuit modelling was conducted to obtain the "resistor components" that exist in a CFRP and predict the electromechanical behavior under various mechanical loads.
机译:在这项研究中,我们提出了基于电阻测量的预测和检测碳纤维增强塑料(CFRPs)的变形和层间裂纹扩展的分析和实验方法。从弹性区域到裂纹扩展,研究了CFRP的机电行为。 CFRP承受拉伸,三点弯曲和I型双悬臂梁载荷,并且标志性的机电响应与随后的变形和裂纹扩展相关。自感研究扩展到了不同的纤维组合和电极放置方案,以获得定制的灵敏度。通过有限元分析验证了实验结果。并行地,进行等效电路建模以获得存在于CFRP中的“电阻器组件”,并预测各种机械负载下的机电行为。

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