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Electrical Resistance Change of Unidirectional CFRP Due to Applied Load

机译:施加载荷导致单向CFRP的电阻变化

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Carbon Fiber Reinforced Plastic (CFRP) is composed of electric conductive carbon fibers and electric insulator resin. Self-monitoring system has been reported utilizing electric resistance change of unidirectional CFRP due to fiber breakages and to applied strain. Piezoresistivity is electric resistance change with applied strain. Many researchers have already reported the piezoresistivity of unidirectional CFRP. There is, however, large discrepancy in the measured piezoresistivity even in the fiber direction during tensile loading: both positive piezoresistivity (electric resistance increase) and negative piezoresistivity (electric resistance decrease) are reported during tensile tests. Electric resistance change at electrodes due to poor electric contacts are reported to be a main cause of this large discrepancy. In the present study, therefore, basic properties of piezoresistivity were measured with specimens made from single-ply and multi-ply laminates using a four-prove method. Many cases of electric resistance changes in the fiber direction transverse direction were measured during tensile loading. Effect of shear loading was also investigated using a shear test. To investigate the effect of poor electric contact at the electrodes, electrodes were made without polishing specimen surface and a tensile test was performed with measuring piezoresistivity. After the test, the specimen surface was polished, and a tensile test was performed again using the identical specimen. As a result, positive piezoresistivity was obtained for both single-ply and multi-ply specimens and negative piezoresistivity is confirmed that it was caused by the poor electric contact at electrodes.
机译:碳纤维增强塑料(CFRP)由导电碳纤维和电绝缘树脂组成。据报道,自我监测系统利用了由于纤维断裂和施加的应变而引起的单向CFRP电阻变化。压阻是随施加应变的电阻变化。许多研究人员已经报道了单向CFRP的压阻性。但是,即使在拉伸载荷过程中,即使在纤维方向上,测得的压阻也有很大的差异:在拉力测试中,正压阻率(电阻增加)和负压阻率(电阻减小)都报告了出来。据报道,由于不良的电接触导致电极上的电阻变化是造成这种巨大差异的主要原因。因此,在本研究中,压阻率的基本特性是使用四层法通过单层和多层层压板制成的样品进行测量的。在拉伸载荷期间,测量了许多情况下沿纤维方向横向的电阻变化。还使用剪切试验研究了剪切载荷的影响。为了研究电极之间不良电接触的影响,在不抛光样品表面的情况下制作了电极,并通过测量压阻进行了拉伸试验。试验后,对试样表面进行抛光,并使用相同的试样再次进行拉伸试验。结果,对于单层和多层样品都获得了正压阻,并且证实了负压阻是由电极上不良的电接触引起的。

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