基于零群速度兰姆波的应力测量实验研究

He Pancong, Yuan Maodan, Ji Xuanrong, Xu Weiming
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摘要

工程结构的应力状态是进行可靠性评估的关键信息。然而,传统的超声测量方法并不适用于局部应力测量。Lamb波声弹性的频散特性表明,在截止频率附近的高阶Lamb波对应力具有较高的敏感性。考虑到零群速度(ZGV)模式与截止频率的接近性及其对材料局部特性的敏感性,提出了一种基于ZGV模式的薄板局部应力测量方法。建立了斜入射超声系统进行实验验证。根据斯涅尔定律定制楔形,有效地激发和接收S1-ZGV模式的信号。对S1-ZGV的直波部分进行滤波后的频谱分析,得到其频率。在3mm均匀6061铝板上进行拉伸实验,得到S1-ZGV频率与应力水平之间的标定曲线。然后设计了阶梯板,在拉力试验机的两个位置产生不同的应力。然后通过校准的频率-应力系数来评估应力。实测应力与计算应力吻合较好,证明了S1-ZGV法测量薄板局部应力的有效性。
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Experimental Study on Stress Measurement Based on Zero-Group-Velocity (ZGV) Lamb Waves
The stress state of engineering structures is the key information for the reliability evaluation. However, conventional ultrasonic method is not suitable for local stress measurement. The dispersion characteristics of Lamb wave acoustoelasticity show that higher-order Lamb waves near cut-off frequency possess higher sensitivity to stress. Considering that the proximity of zero-group-velocity (ZGV) mode and the cut-off frequency and its sensitivity to local material property, a local stress measurement method based on ZGV mode is proposed for thin plates. An oblique incident ultrasonic system was built for experimental validation. The wedges were tailored made based on the Snell’s law to efficiently excite and receive the signal of S1-ZGV mode. The frequency of S1-ZGV was obtained by spectra analysis after filtering out the direct wave part. Tensile experiments were carried out on a uniform 6061 aluminum plate with 3mm to obtain the calibration curve between S1-ZGV frequency and stress level. Then a step-wise plate was designed to generate different stress at two positions on a tensile testing machine. The stresses were then evaluated by the calibrated frequency-stress coefficient. The measured stresses agreed well with the calculated stress, proving that S1-ZGV method is effective for local stress measurement in thin plates.
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