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Method of sensing impact damage in carbon fiber polymer-matrix composite by electrical resistance measurement

机译:通过电阻测量感测碳纤维聚合物基复合材料冲击破坏的方法

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The method of sensing impact damage in carbon fiber polymer-matrix structural composite by DC electrical resistance measurement was evaluated by measuring the resistance of the top surface (surface receiving impact). The resistance obtained by using the four-probe method is a more sensitive, more precise (less data scatter) and more accurate indicator of composite damage than that obtained by using the two-probe method. The data scatter is low for both four-probe and two-probe resistances for impact energy up to 5 J, but it is lower for the four-probe resistance than the two-probe resistance. The data scatter increases with damage. It is attributed to electrical contact degradation. The four-probe resistance of the 8-lamina composite increases upon impact, such that the fractional increase diminishes as the distance from the point of impact increases. The four-probe resistance of the 24-lamina composite increases upon impact for the specimen segment containing the point of impact, but decreases slightly upon impact for the segments within about 20 mm from the point of impact. The two-probe resistance has less tendency to decrease upon impact than the four-probe resistance.
机译:通过测量顶表面的电阻(受表面冲击),评估了通过直流电阻测量来感测碳纤维聚合物-基体结构复合材料的冲击损伤的方法。与使用双探针方法获得的抗性相比,使用四探针方法获得的抗性更敏感,更精确(数据散布更少)并且是复合损伤的更准确指示。对于高达5 J的冲击能量,四探针电阻和两探针电阻的数据散射都较低,但是四探针电阻的数据散射低于两探针电阻的数据散射。数据散布随着损坏而增加。这归因于电接触退化。冲击时8层复合材料的四探针电阻会增加,因此随着与冲击点之间距离的增加,分数增加会减小。对于包含冲击点的样品段,24层复合材料的四探针抗力在受到冲击时会增加,而在距冲击点约20毫米以内的部分发生冲击时,其24层复合材料的四针阻力会略有下降。与四探针电阻相比,两探针电阻在冲击时减小的趋势较小。

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  • 来源
    《Journal of Materials Science 》 |2006年第8期| 2281-2289| 共9页
  • 作者单位

    Composite Materials Research Laboratory University at Buffalo State University of New York;

    Composite Materials Research Laboratory University at Buffalo State University of New York;

    Composite Materials Research Laboratory University at Buffalo State University of New York;

    Global Contour Ltd.;

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