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Sensing delamination in a carbon fiber polymer-matrix composite during fatigue by electrical resistance measurement

机译:通过电阻测量感知疲劳期间碳纤维聚合物基复合材料的分层

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摘要

Delamination in a crossply [0/90] continuous carbon fiber polymer-matrix composite was sensed in real time during fatigue by measuring the electrical resistance of the composite in the through-thickness direction. Upon O degrees tension-tension fatigue at a maximum stress of 57% of the fracture stress, the resistance irreversibly increased both in spurts and continuously, because of delamination, which started at 33% of the fatigue life. The resistance increased upon loading and decreased upon subsequent unloading in every cycle, thereby allowing strain sensing. The minimum resistance at the end of a cycle irreversibly increased during the first 0.1% of the fatigue life. The resistance became noisy starting at 62% of the fatigue Life, at which delamination occurred rapidly and the fraction of laminate area delaminated reached 4.3%.
机译:通过在整个厚度方向上测量复合材料的电阻,可以在疲劳期间实时感测交叉[0/90]连续碳纤维聚合物-基体复合材料中的分层。在最大应力为断裂应力57%的情况下进行O度拉伸-拉伸疲劳处理时,由于脱层,阻力从喷点和连续地不可逆地增加,开始于疲劳寿命的33%。在每个循环中,电阻在加载时都会增加,而在随后的卸载时会降低,因此可以进行应变感测。在疲劳寿命的前0.1%内,循环结束时的最小电阻不可逆地增加。从疲劳寿命的62%开始,电阻变得嘈杂,在该疲劳寿命下会迅速发生分层,而分层区域的分层比例达到4.3%。

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