首页> 外文期刊>Journal of intelligent material systems and structures >Comparison of the Electrical Resistance and Potential Techniques for the Self-sensing of Damage in Carbon Fiber Polymer-Matrix Composites
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Comparison of the Electrical Resistance and Potential Techniques for the Self-sensing of Damage in Carbon Fiber Polymer-Matrix Composites

机译:碳纤维聚合物基复合材料损伤自我感应的电阻和电位技术的比较

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摘要

The electric potential method, which involves measuring the potential at a distance from the line of current application, is effective for damage sensing of carbon fiber polymer-matrix composites when the distance is sufficiently small, such as 1.0mm (8 laminae) in the through-thickness direction. It is ineffective when this distance is 2.1 mm (16 laminae). The electrical resistance method, which involves measuring the potential on the line of current application, has no thickness limitation. However, it suffers from current path distortion upon damage and the consequent reduced sensitivity for damage. A minor phenomenon of the measured resistance decreasing with increasing damage is observed for the regions of the composite not containing the point of impact. The major phenomenon of the resistance increasing with damage overshadows this minor phenomenon for the region containing the point of impact.
机译:当距离足够小时(例如在通孔中为1.0毫米(8层))时,电势法涉及测量距电流施加线一定距离的电势,对于碳纤维聚合物-基体复合材料的损伤感测是有效的。厚度方向。该距离为2.1毫米(16层)时无效。电阻方法涉及测量电流施加线上的电势,没有厚度限制。但是,其遭受损坏时电流路径失真的影响,并因此降低了对损坏的敏感性。对于复合材料中不包含冲击点的区域,观察到较小的现象,即测量的电阻随损伤的增加而降低。抵抗力随损伤而增加的主要现象使包含冲击点的区域的这种次要现象黯然失色。

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