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首页> 外文期刊>NDT & E international >Influence of slit width on harmonic generation in ultrasonic surface waves excited by masking a laser beam with a line arrayed slit
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Influence of slit width on harmonic generation in ultrasonic surface waves excited by masking a laser beam with a line arrayed slit

机译:缝隙宽度对用行缝隙掩盖激光束激发的超声波表面波中谐波产生的影响

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摘要

Masking an expanded laser beam with a line-arrayed slit is an effective and easy way to produce line arrayed illumination sources in order to excite a laser-generated surface wave within a narrowband of frequencies. The objective of this study is to identify the slit width dependency of the magnitude of harmonic waves generated by this technique. The frequency response of the generated surface wave is presented first under the assumption that the spatial energy profile of each line beam is a simple one-dimensional square pulse and the temporal profile is a delta function. Then the magnitude ratio A_2/ A_1 (Ay. magnitude of the fundamental wave, A_2: magnitude of the second-order harmonic wave) is obtained as a function of the duty ratio to show that it has a minimum of zero at a specific duty ratio; that is, the initial generation of the second-order harmonic wave can be fully suppressed at this duty ratio. This is comparable with the conventional Gaussian line beam model, in which the initial generation of the second-order harmonic wave is inevitable. Next, we carried out a two-dimensional thermo-elastic analysis using FEM in order to model a practical situation, where thermal conduction and a Gaussian temperature profile are factors. Naturally, the frequency response obtained from this numerical analysis does not perfectly match that of the one-dimensional analysis; however, we prove that the magnitude ratio A_2/A_1 has a minimum at a specific duty ratio. Additionally, the dependency of A_2/A_1 on the duty ratio obtained from the numerical analysis showed very good agreement with the experimental results.
机译:用线阵列的缝隙遮盖扩展的激光束是产生线阵列照明源的一种有效而简便的方法,目的是激发窄频带内激光产生的表面波。这项研究的目的是确定这种技术产生的谐波幅度的狭缝宽度依赖性。首先假设每个线束的空间能量分布是一个简单的一维方波脉冲,而时间分布是一个增量函数,则首先介绍生成的表面波的频率响应。然后,获得作为占空比的函数的幅度比A_2 / A_1(基波的Ay。,A_2:二阶谐波的幅度),以表明在特定占空比下其最小值为零;即,在该占空比下,可以充分抑制二次谐波的初期产生。这可以与传统的高斯线束模型相比较,后者不可避免地会产生二阶谐波。接下来,我们使用FEM进行了二维热弹性分析,以便对实际情况建模,其中热传导和高斯温度分布是因素。自然地,从该数值分析获得的频率响应与一维分析的频率响应并不完全匹配。但是,我们证明了在特定的占空比下,幅度比A_2 / A_1具有最小值。另外,数值分析得到的A_2 / A_1对占空比的依赖性与实验结果非常吻合。

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