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光谱力学——基于光谱分析的实验力学新方法研究
Spectral mechanics — New method research of experimental mechanics based on spectral analysis
投稿时间:2024-05-06  修订日期:2024-06-18
DOI:
中文关键词:  光谱力学  布里渊散射光谱  光学相干弹性成像  高光谱成像  反射光谱  二次谐波
英文关键词:Spectral mechanics  Brillouin scattering spectroscopy  Optical coherence elastography  Hyperspectral imaging  Spectral reflectometry  Second harmonic generation
基金项目:国家自然科学基金项目(面上项目,重点项目,重大项目)
作者单位邮编
孙容 天津大学 300350
仓钰 同济大学 
王怀文 天津商业大学 
孙翠茹 天津大学 
李秋 天津职业技术师范大学 
曲传咏 天津大学 
富东慧 天津大学 
仇巍* 天津大学 300072
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中文摘要:
      以光谱为探测手段和分析技术的光谱力学已成为实验力学领域新发展起了的技术体系分支。相比光测技术,光谱技术提供了更为丰富的信息维度,且通常兼具空间分辨、测试高效率、无损非接触等特点,适于开展原位、在线的实验应力分析。近年来,包括显微拉曼、荧光光谱、太赫兹波时域光谱以及X射线衍射等技术得到快速发展,同时还涌现出包括布里渊散射光谱、光学相干弹性成像、高光谱、反射光谱、二次谐波等新的光谱力学方法。本文首先对四类典型的光谱力学技术的力学表征基本原理、特点特征以及近期代表性成果进行简要论述,随后重点对五种最新发展的光谱力学技术的原理、优势以及先驱性成果和发展亟需突破的瓶颈开展论述,最后通过横向对比,讨论了光谱力学未来发展的主要趋势和方向。本文作者们希望通过这篇对光谱力学领域各方法的综述,为从事力学及其交叉学科领域开展实验研究的科研工作者提供较为系统的信息参考,同时为对光谱力学方法基础研究感兴趣的青年科研人员提供关于本领域的快速而系统的全面认知。
英文摘要:
      Spectral mechanics have emerged as a new branch in the field of experimental mechanics by using spectroscopies as measuring methods and analyzing techniques. Compared with photomechanical methods, spectral techniques provide an abundant dimension of information with the ability to achieve high spatial resolution, enhanced testing efficiency, non-contact and non-destructive measurement, which are suitable for in-situ and online experimental stress analyses. In recent years, several spectroscopic techniques were developing rapidly, including micro-Raman spectroscopy, micro-Fluorescence spectroscopy, Terahertz time-domain spectroscopy, and X-ray diffraction. Additionally, some novel spectroscopic methods were also introduced to experimental studies relative to mechanics, such as Brillouin scattering spectroscopy, optical coherence elastography, hyperspectral imaging, spectral reflectometry, and second harmonic generation. In this paper, the basic principles, features, and recent representative achievements of the former four well-studied spectral techniques were briefly summarized. Then, focusing on the latter five newly developed spectral methods, the principles, advantages, pioneering achievements and current bottlenecks of which were detailedly presented. Finally, the main trends and directions for the future developments of spectral mechanics were discussed. This review aims to present a systematic reference for researchers engaged in experimental research of mechanics and interdisciplinary studies, and offer a rapid and comprehensive understanding of the field for young researchers interested in fundamental studies on spectral mechanics.
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