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Detection of drilling-induced delamination in aeronautical composites by noncontact laser ultrasonic method

机译:非接触激光超声法检测航空复合材料中的钻孔诱发分层

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摘要

A novel application of the laser ultrasonic technique for the detection of drilling-induced delamination in composite components of aircrafts is proposed. Numerous key components of aircrafts are made of composite materials, and drilling is often a final operation during assembly. Drilling-induced delamination significantly reduces the structural reliability, and it is rather difficult to be detected effectively and automatically. The laser ultrasonic technique is a promising method to solve the problem. This paper investigates the characterization of drilling-induced delamination in composites by a noncontact laser ultrasonic method. A carbon fiber reinforced plastic laminate with drilling holes is prepared as a specimen. The characterization of drilling-induced delamination with laser-generated ultrasonic waves is investigated theoretically and experimentally, and the morphology features of the delamination are obtained by laser ultrasonic C-scan testing. The results prove that the laser ultrasonic technique is effective for the detection of drilling-induced delamination in composite components, and it is a feasible solution for evaluating the drilling quality during assembly.
机译:提出了激光超声技术在检测飞机复合材料中钻井引起的分层中的一种新应用。飞机的许多关键部件都由复合材料制成,而钻孔通常是组装过程中的最终操作。钻孔引起的分层明显降低了结构的可靠性,并且很难有效且自动地对其进行检测。激光超声技术是解决该问题的有前途的方法。本文研究了通过非接触激光超声方法对复合材料中钻孔引起的分层的表征。准备带有钻孔的碳纤维增强塑料层压板作为样品。从理论上和实验上研究了激光产生的超声波引起的钻削分层的特征,并通过激光超声C扫描测试获得了分层的形态学特征。结果证明,激光超声技术对于检测复合材料中的钻孔引起的分层是有效的,并且是评估装配过程中钻孔质量的可行解决方案。

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