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An experimental study on the repair of a notched beam subjected to dynamic loading with piezoelectric patches

机译:压电贴片动态加载缺口梁的实验研究。

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摘要

An experimental realization of the effective repair of a notched cantilever beam structure subjected to dynamic loading by use of piezoelectric patches is reported. In the experiment, a small piezoelectric patch used as a sensor is placed on the notch position to monitor the severity of the stress concentration around the notch area by measuring the charge output on the sensor, and a patch used as an actuator is located around the notch area to generate a required bending moment by employing an actuation voltage to reduce the stress concentration at the notch position. The actuation voltage on the actuator is designed from a feedback circuit process. An analytical model is first established for the repair process by providing the calculation of the actuation voltage, and then a finite element model (FEM) is conducted to verify the effectiveness of the analytical model. Finally, repair of a notched cantilever beam is realized experimentally. Both the numerical simulations and the experimental studies show that the developed practical structural repair technique for notched beams with piezoelectric patches is effective and efficient.
机译:报告了通过使用压电贴片有效修复动态载荷作用下的缺口悬臂梁结构的实验实现。在实验中,将一个用作传感器的压电小贴片放在槽口位置,以通过测量传感器上的电荷输出来监控槽口区域附近应力集中的严重性,并将用作致动器的贴片置于传感器周围。缺口区域,通过施加激励电压来减少缺口位置的应力集中,从而产生所需的弯矩。执行器上的启动电压由反馈电路过程设计而成。首先通过提供驱动电压的计算为维修过程建立一个分析模型,然后进行有限元模型(FEM)来验证该分析模型的有效性。最后,通过实验实现了缺口悬臂梁的修复。数值模拟和实验研究均表明,所开发的实用的压电贴片缺口梁结构修复技术是有效的。

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