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Vibro-acoustic modulation (VAM)-inspired structural integrity monitoring and its applications to bolted composite joints

机译:振动声调制(VAM)启发的结构完整性监控及其在螺栓复合接头中的应用

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摘要

Vibro-acoustic modulation (VAM) - one of the prevailing nonlinear methods for material characterization and structural damage evaluation - is based on the effect of modulation of a low-frequency vibration (pumping vibration) on a high-frequency acoustic wave (probing wave). In this study, the contact acoustic nonlinearity (CAN), associated with changes in the solid-solid interface of a bolted joint under VAM, due to bolt loosening, is explored analytically and experimentally, on which basis a VAM-inspired approach is developed for monitoring structural integrity of bolted joints. Numerical simulation based on a theoretical model with structural nonlinear contact stiffness is implemented, to achieve insight into CAN induced by a loose bolt. A quantitative correlation between vibro-acoustic nonlinear distortion and degree of bolt loosening is ascertained. The developed approach is applied to detect bolt loosening in a composite bolted joint and to evaluate the residual torque of the loose bolt quantitatively. Take a step further, the VAM-based nonlinear approach is compared against an elastic wave-based linear method, underscoring a higher sensitivity to bolt loosening. From early awareness of bolt loosening to continuous evaluation of the bolt loosening progress, this VAM-based approach has provided a cost-effective framework for monitoring the health and integrity of a composite bolted joint. (C) 2017 Elsevier Ltd. All rights reserved.
机译:振动声调制(VAM)是用于材料表征和结构损伤评估的一种流行的非线性方法之一,它基于对低频声波(探测波)的低频振动(泵浦振动)的调制效果。在这项研究中,通过分析和实验研究了与声压非线性(CAN)有关的,与由于螺栓松动而在VAM下的螺栓连接的固-固界面变化相关的问题,在此基础上,开发了VAM启发的方法监控螺栓连接的结构完整性。基于具有结构非线性接触刚度的理论模型进行了数值模拟,以了解由松动螺栓引起的CAN。确定了振动声非线性变形与螺栓松动程度之间的定量关系。所开发的方法适用于检测复合螺栓连接中的螺栓松动并定量评估螺栓松动的残余扭矩。更进一步,将基于VAM的非线性方法与基于弹性波的线性方法进行了比较,强调了对螺栓松动的更高敏感性。从对螺栓松动的早期了解到对螺栓松动进度的持续评估,这种基于VAM的方法提供了一种经济高效的框架来监控复合螺栓连接的健康状况和完整性。 (C)2017 Elsevier Ltd.保留所有权利。

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