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Study of Disbond Effects in a Jointed Composite Structure under Variable Ambient Temperatures

机译:可变环境温度下联合复合结构中的剥脱效应研究

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Jointed composite structures (JCSs) are often used in the marine, automotive and civil engineering industries. In JCS, thin carbon-fiber-reinforced composite laminates are bonded with epoxy adhesives. But, disbonds can occur at the bond-interphase due to variable environmental conditions, cyclic loading, aging, fatigue, amongst others, which may lead to a substantial reduction in load-bearing capacity of the structural assembly. Hence, it is essential to identify these hidden disbonds, and the identification becomes more challenging due to frequent change in ambient temperatures. It is found that the ultrasonic guided wave propagation based inspection technique is suitable for inspection of such complex multi-layered structures. The aim of this paper is to investigate the disbond effects on the propagating wave modes in the JCS under variable ambient temperatures. Towards this, a series of finite element based numerical simulation of guided Lamb wave propagation in JCS under variable temperature is carried out in ABAQUS using piezoelectric actuator-sensor transducers. Laboratory experiments are then conducted to investigate the disbond effects and a good agreement is found between the simulation and experimental results.
机译:联合复合结构(JCSS)通常用于海洋,汽车和土木工程行业。在JCS中,薄的碳纤维增强复合层压材料与环氧粘合剂粘合。但是,由于可变的环境条件,循环载荷,老化,疲劳,其中,在粘结间,可以在债券间来发生,这可能导致结构组件的承载能力大幅度降低。因此,必须识别这些隐藏的禁用,并且由于环境温度频繁变化,识别变得更具挑战性。结果发现基于超声波引导波传播的检查技术适用于检查这种复杂的多层结构。本文的目的是探讨可变环境温度下JCS中传播波动模式的禁用效应。朝向此,在可变温度下,在ABAQUS下,使用压电致动器传感器换能器在可变温度下JCS中的引导羔羊波传播的一系列有限元数值模拟。然后进行实验室实验以研究禁用效应,模拟和实验结果之间发现了良好的一致性。

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