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IWSHM 2017: Structural health monitoring of the loosening in a multi-bolt structure using linear and modulated nonlinear ultrasound acoustic moments approach

机译:IWSHM 2017:使用线性和调制非线性超声声矩方法对多螺栓结构中的松动进行结构健康监测

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Applying highly accurate clamp loads in bolted joints during assembly and inspections is essential for estimation of the integrity of a joint and reduction of disastrous failures. Non-destructive post-assembly and in-service inspections of joint integrity are vital and significantly reduce maintenance and associated repair costs. Therefore, a bolt control technology able to provide precise direct measurement of bolt loosening state during assembly and in-service is needed. This work proposes an in situ structural health monitoring approach based on the evaluation of linear and nonlinear modulated acoustic moments for the assessment of the loosened state of bolts in a multi-bolted structure. Linear and nonlinear ultrasound methods’ detection accuracy and robustness can be highly dependent on correct frequency selection. The structural health monitoring method suggested uses material resonance and a frequency sweep methodology coupled with a cross-correlation method which identifies significant frequency pairs or higher harmonics used to determine bolt loosening. The proposed approach was tested and successfully validated on three different bolted structures showing that loosening of the structure can be identified accurately with a limited number of transducers. The solution provides a qualitative solution, which identifies degradation in the torque of a bolted structure; furthermore, the developed structural health monitoring method has the potential to become an automatic tool for monitoring the loosened state of bolts in critical complex structural components.
机译:在组装和检查过程中,在螺栓接头上施加高精度的夹紧载荷对于估算接头的完整性和减少灾难性故障至关重要。关节完整性的无损组装后和在役检查非常重要,可显着减少维护和相关的维修成本。因此,需要一种能够在组装和使用过程中精确地直接测量螺栓松动状态的螺栓控制技术。这项工作提出了一种基于线性和非线性调制声矩评估的现场结构健康监测方法,用于评估多螺栓结构中螺栓的松动状态。线性和非线性超声方法的检测精度和鲁棒性在很大程度上取决于正确的频率选择。建议的结构健康监测方法使用材料共振和扫频方法,再加上互相关方法,该方法可确定用于确定螺栓松动的重要频率对或更高次谐波。在三种不同的螺栓连接结构上测试并成功验证了所提出的方法,表明可以用有限数量的换能器准确识别结构的松动。该解决方案提供了定性解决方案,该解决方案确定了螺栓连接结构扭矩的降低。此外,开发的结构健康监测方法有可能成为监测关键复杂结构部件中螺栓松动状态的自动工具。

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