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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >A Pulse Inversion-Based Nonlinear Ultrasonic Technique using a Single-Cycle Longitudinal Wave for Evaluating Localized Material Degradation in Plates
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A Pulse Inversion-Based Nonlinear Ultrasonic Technique using a Single-Cycle Longitudinal Wave for Evaluating Localized Material Degradation in Plates

机译:一种基于脉冲反转的非线性超声技术,其使用单循环纵向波评估板局部材料劣化

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General nonlinear ultrasonic techniques (NUTs) use tone-burst ultrasonic waves with a narrow bandwidth so that the fundamental frequency component and the second-order harmonic component can be clearly separated in the frequency domain. Meanwhile, when using a longitudinal wave propagating in the thickness direction, the number of cycles of tone-burst signals can be limited by the object thickness. In some cases, only a pulsed signal or a single-cycle signal, which has broad bandwidth, may be applicable to avoid superposition of the first transmitted wave and the multi-reflected waves. Such cases complicate the use of general NUTs, and it is necessary to apply a method to precisely extract the second-order harmonic component even in broadband signals to the NUT. In this study, the pulse inversion (PI) method, which can extract only even harmonics or odd harmonics by superposing or subtracting two wave signals obtained from 180 degrees out-of-phase inputs, is applied to an NUT using broadband ultrasound. The performance of the PI-based NUT with respect to material degradation is verified using a series of heat-treated aluminum alloy specimens with various levels of precipitates. The experimental results show that the nonlinearity parameters measured with single-cycle signals agree well with the previous well-validated experimental results obtained using narrowband signals. Next, the PI-based NUT is used to assess the localized material degradation of a stainless steel plate subjected to high-cycle fatigue. The experimental results show that the profile of the measured nonlinearity parameters as a function of scan position is consistent with the intended distribution of localized fatigue damage, which demonstrates the potential feasibility of the proposed technique for evaluation of localized material degradation in plates.
机译:一般非线性超声技术(螺母)使用具有窄带宽的色调突发超声波,从而可以在频域中清楚地分离基本频率分量和二阶谐波分量。同时,当在使用厚度方向上传播的纵向波时,音调突发信号的周期数可以受到物体厚度的限制。在一些情况下,仅脉冲信号或具有宽带宽的单循环信号可以适用于避免第一透射波和多反射波的叠加。这种情况使一般螺母的使用复杂化,也需要应用即使在宽带信号到螺母的宽带信号中也能够精确提取二阶谐波分量。在该研究中,脉冲反转(PI)方法可以仅通过叠加或减去从180度超出的两个波信号来提取甚至谐波或奇次谐波,应用于使用宽带超声波的螺母。使用一系列热处理的铝合金标本验证了PI系螺母相对于材料劣化的性能,验证了一系列热处理的铝合金标本,具有各种沉淀物。实验结果表明,使用单循环信号测量的非线性参数与使用窄带信号获得的先前验证的实验结果很好。接下来,基于PI的螺母用于评估经受高循环疲劳的不锈钢板的局部材料劣化。实验结果表明,测量的非线性参数的轮廓作为扫描位置的函数的函数与局部疲劳损伤的预期分布一致,这证明了所提出的技术评估板中局部材料降解的潜在可行性。

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