微差激光加热铝合金表面声波的色散特性

Xi'an Liu, Z. Shen, Alexy.M. Lomonsov, Chenyin Ni, Ling Yuan, Weiwei Kan
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引用次数: 0

摘要

表面声波在具有弹性性质的材料中传播时存在色散,在近表面区域内,色散谱在深度上呈非均匀分布,可以用来重建弹性性质的分布。采用毫秒级激光器对铝合金进行加热,使试样在深度上产生温度梯度。由于温度梯度的影响,saw的温度相关弹性性能在深度上分布不均,在激光照射区域内传播时会发生分散,通过分析色散曲线可以得到材料的温度相关弹性性能。实验研究了微差激光辐照下具有温度梯度的铝合金表面声沿近次表面传播的色散特性。通过测量微差辐照和无微差辐照下saw沿试样传播的色散,消除了表面粗糙度引起的色散效应。实验数据表明,温度引起的弹性性能的非均匀分布可以导致saw的正常分散。建立了基于有效速度法的理论模型来计算色散曲线。理论结果与实验数据吻合较好。实验和理论结果表明,在表面温度为154℃的铝合金中,在35MHz频率下,毫秒激光照射形成的温度梯度可引起saw速度漂移约65m/s。实验和理论结果都证明了这种saw色散技术配合毫秒激光研究材料温度依赖力学性能的可行性。研究结果可为反演材料的温度相关弹性特性提供理论和实验依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dispersion characteristic of surface acoustic waves propagating through aluminum alloy heated by millisecond laser
Surface acoustic waves(SAWs) exist dispersion when they propagate along material with elastic properties distributing heterogeneously over depth among near-surface area, and the dispersion spectrum can be applied to reconstruct elastic properties' distribution. A millisecond laser was assembled to heat aluminum alloy, resulting in a temperature gradient over depth in sample. As temperature dependence elastic properties distributing heterogeneously over depth because of the temperature gradient, SAWs will disperse when propagate across laser irradiated area, and materials' temperature dependence elastic properties can be obtained by analyzing the dispersion curve. Dispersion characteristic of laser-generated surface acoustic waves propagating along aluminum alloy with a temperature gradient near subsurface induced by millisecond laser irradiation was studied experimentally. The dispersion effects induced by surface roughness was removed by measuring the dispersion of SAWs propagating along the sample with millisecond irradiation and without it. The experimental data showed that heterogeneous distribution of elastic properties induced by the temperature can lead SAWs dispersing normally. Theoretical model based on effective velocity method was established to calculate the dispersion curve. Theoretical results agreed well with the experiment data. It was shown from experimental and theoretical results that temperature gradient formed by millisecond laser irradiation in aluminum alloy with surface temperature being 154°C can induce about 65m/s SAWs velocity shift at 35MHz.Experimental and theoretical results demonstrate the feasibility of this SAWs dispersion technique cooperated with millisecond laser to study materials' temperature dependence mechanical properties. Results of this paper may provide theoretical and experimental basis for inversing materials' temperature dependence elastic properties.
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