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Non-contact acoustic tests based on nanosecond laser ablation: Generation of a pulse sound source with a small amplitude

机译:基于纳秒激光烧蚀的非接触声学测试:产生小振幅的脉冲声源

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摘要

A method to generate a pulse sound source for acoustic tests based on nanosecond laser ablation with a plasma plume is discussed. Irradiating a solid surface with a laser beam expands a high-temperature plasma plume composed of free electrons, ionized atoms, etc. at a high velocity throughout ambient air. The Shockwave generated by the plasma plume becomes the pulse sound source. A laser ablation sound source has two features. Because laser ablation is induced when the laser fluence reaches 10~(12)-10~(14) W/m~2, which is less than that for laser-induced breakdown (10~(15) W/m~2), laser ablation can generate a lower sound pressure, and the sound source has a hemispherical radiation pattern on the surface where laser ablation is generated. Additionally, another feature is that laser-induced breakdown sound sources can fluctuate, whereas laser ablation sound sources do not because laser ablation is produced at a laser beam-irradiation point. We validate this laser ablation method for acoustic tests by comparing the measured and theoretical resonant frequencies of an impedance tube.
机译:讨论了一种基于纳秒激光烧蚀和等离子体羽流产生用于声学测试的脉冲声源的方法。用激光束照射固体表面使由自由电子,电离原子等组成的高温等离子体羽流在整个环境空气中高速膨胀。等离子羽流产生的冲击波成为脉冲声源。激光消融声源具有两个特征。因为当激光通量达到10〜(12)-10〜(14)W / m〜2时会引起激光烧蚀,这要小于激光击穿时的激光消融(10〜(15)W / m〜2),激光烧蚀可以产生较低的声压,并且声源在产生激光烧蚀的表面上具有半球形辐射图。另外,另一个特征是激光诱发的击穿声源会波动,而激光烧蚀声源则不会,因为在激光束照射点产生了激光烧蚀。通过比较阻抗管的实测和理论谐振频率,我们验证了此激光烧蚀方法在声学测试中的有效性。

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