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Ultrasonic detection and sizing of compressed cracks in glass- and carbon-fibre reinforced plastic composites

机译:超声波检测和玻璃纤维和碳纤维增强塑料复合材料中压缩裂纹的大小

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Nondestructive evaluation of compressed cracks is a major challenge. A quantitative study of the effect of crack-tip closure on the pulse-echo ultrasonic sizing of delaminations in fibre-reinforced polymer-matrix composites (FRP) is presented. In particular, this study focuses on the interaction of ultrasound with a closed crack or kissing disbond, and their effect on the ultrasonic inspectability of FRP laminates consisting of carbon and glass plies. The compression of laminar cracks in these two different laminate types is clearly detectable via both pulse-echo and through-transmission ultrasonic measurements, but the reflected ultrasonic pulses in the two material types exhibit markedly different behaviour. The glass-fibre laminates show a drop in the reflected signal for crack openings up to approximately half the crack growth load, whereas the corresponding carbon-fibre laminates show the expected increase in the reflected signal as the crack opens. The origins of the observed effect of crack closure on the reflection and transmission of ultrasound are analysed in detail to ascertain possible mechanisms responsible for these effects.
机译:压缩裂纹的无损评估是一个重大挑战。定量研究了裂纹尖端闭合对纤维增强聚合物基复合材料(FRP)中分层的脉冲回波超声施胶的影响。尤其是,这项研究的重点是超声波与闭合裂纹或接吻脱胶的相互作用,以及它们对由碳和玻璃层组成的FRP层压板的超声波检查性能的影响。通过脉冲回波和直通超声测量,可以清楚地检测到这两种不同的层压板中层状裂纹的压缩,但是在两种材料类型中反射的超声脉冲表现出明显不同的行为。玻璃纤维层压板在裂纹开口处的反射信号下降到裂纹扩展载荷的一半左右,而相应的碳纤维层压板在裂纹打开时反射信号的预期增加。将详细分析观察到的裂纹闭合对超声反射和透射的影响的起源,以确定造成这些影响的可能机制。

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