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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Additively manufactured integrated slit mask for laser ultrasonic guided wave inspection
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Additively manufactured integrated slit mask for laser ultrasonic guided wave inspection

机译:用于激光超声波引导波检测的加薄制造的集成狭缝掩模

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摘要

Guided ultrasonic waves are attractive for inspection of additively manufactured plate-like components. Illumination of a slit mask by a pulsed laser is one method by which guided ultrasonic waves can be generated. This work proposes a method for generating narrowband ultrasonic guided waves using an additively manufactured slit mask that is integrated onto the component during selective laser melting (SLM) process. Multiple guided wave modes with a dominant wavelength but with different frequencies were generated using the slit mask fabricated using AlSi12 material. The generated modes were identified using the time frequency response of the received signals and dispersion plots. Identifying the modes and its characteristics (frequency, wavelength, phase and group velocity) beforehand facilitates material and defect characterization. A multiphysics numerical model was developed to simulate laser generation of ultrasound and the model was validated using experimental results. The numerical model developed aided in understanding the physics of line arrayed laser ultrasonic generation and was used as a tool to optimize laser parameters. The developed model was used to study the effect of pulse width of the laser on Lamb wave mode generation. It was observed that a pulse width of 100 ns reduced the overall ultrasonic bandwidth to 4.5 MHz thereby limiting the modes to the fundamental modes A0 and S0 for the given wavelength of 0.8 mm. Rayleigh wave studies using a slit mask showed that the rate of decay of the fundamental frequency component was steeper than the rate of decay of the second harmonic component.
机译:引导的超声波对于检查加瘦的板状部件是有吸引力的。通过脉冲激光照射狭缝掩模的照明是可以产生引导超声波的一种方法。该工作提出了一种用于使用积极的制造的狭缝掩模产生窄带超声波导波的方法,该缝隙在选择性激光熔化(SLM)过程中集成在部件上。使用使用Alsi12材料制造的狭缝掩模产生具有主波长但具有不同频率的多个导向波模式。使用接收信号和色散图的时间频率响应来识别所生成的模式。预先识别模式及其特性(频率,波长,相位和群速度)促进材料和缺陷表征。开发了一种多体性数值模型来模拟超声波的激光生成,使用实验结果验证模型。在理解线路阵列激光超声产生的物理学中,在理解的数值模型中辅助,用作优化激光参数的工具。开发的模型用于研究激光脉冲宽度对羊隙波模式的影响。观察到,100ns的脉冲宽度将整体超声带宽降低到4.5MHz,从而将模型限制到基本模式A0和S0的给定波长为0.8mm。使用狭缝掩模的瑞利波研究表明,基本频率分量的衰减速率比第二谐波分量的衰减速率陡峭。

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