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Microstructure and damage of the interlaminar interface of carbon fiber polymer-matrix composites, monitored by contact electrical resistivity measurement

机译:碳纤维聚合物 - 基质复合材料界面界面的微观结构和损伤,通过接触电阻率测量监测

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The microstructure and damage of the interlaminar interface of continuous carbon fiber polymer-matrix structural composites were monitored during dynamic changes in temperature, humidity and stress by contact electrical resistivity measurement. The stress was compressive, in the direction perpendicular to the interface. Temperature, humidity and stress had reversible effects on the resistivity, due to the effects on the interfacial microstructure, such as the extent of contact between fibers of adjacent laminae. These parameters had irreversible effects on the resistivity, due to relaxation and damage of the interface. The effects differed between composites with thermoplastic and thermoset matrices. The reversible effects allow the use of the contact resistivity as an indicator of temperature, humidity and stress.
机译:通过接触电阻率测量的温度,湿度和应力的动态变化期间监测连续碳纤维聚合物 - 基质结构复合材料的间隙界面的微观结构和损伤。压力在垂直于界面的方向上是压缩的。由于对界面微观结构的影响,温度,湿度和应力对电阻率具有可逆效应,例如相邻薄片的纤维之间的接触程度。由于界面的松弛和损坏,这些参数对电阻率有不可逆转的影响。具有热塑性和热固性矩阵的复合材料之间的效果不同。可逆效应允许使用接触电阻率作为温度,湿度和应力的指示。

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