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Transient grating spectroscopy: An ultrarapid, nondestructive materials evaluation technique

机译:瞬态光栅光谱:UltraRAPID,无损材料评估技术

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摘要

Structure-property relationships are the foundation of materials science and are essential for predicting material response to driving forces, managing in-service material degradation, and engineering materials for optimal performance. Elastic, thermal, and acoustic properties provide a convenient gateway to directly or indirectly probe materials structure across multiple length scales. This article will review how using the laser-induced transient grating spectroscopy (TGS) technique, which uses a transient diffraction grating to generate surface acoustic waves and temperature gratings on a material surface, nondestructively reveals the material's elasticity, thermal diffusivity, and energy dissipation on the sub-microsecond time scale, within a tunable subsurface depth. This technique has already been applied to many challenging problems in materials characterization, from analysis of radiation damage, to colloidal crystals, to phonon-mediated thermal transport in nanostructured systems, to crystal orientation and lattice parameter determination. Examples of these applications, as well as inferring aspects of microstructural evolution, illustrate the wide potential reach of TGS to solve old materials challenges and to uncover new science. We conclude by looking ahead at the tremendous potential of TGS for materials discovery and optimization when applied in situ to dynamically evolving systems.
机译:结构性质关系是材料科学的基础,对于预测推动力的材料反应至关重要,管理在 - 役材料劣化,以及用于最佳性能的工程材料。弹性,热和声学特性提供了一种方便的网关,直接或间接地探测跨多个长度的材料结构。本文将讨论如何使用激光诱导的瞬态光栅光谱(TGS)技术,其使用瞬态衍射光栅在材料表面产生表面声波和温度光栅,无损地揭示材料的弹性,热扩散性和节能子微秒时间刻度,在可调地下深度内。该技术已经应用于材料表征的许多挑战性问题,从辐射损伤分析到胶体晶体,脊髓晶体中的纳米结构系统中的脊髓晶体传输,以晶体取向和晶格参数测定。这些应用的实例以及推断微观结构演化的方面,说明了TGS的宽潜力范围,以解决旧材料挑战并揭示新科学。我们通过展望在原位应用于动态演化系统时,通过展望TGS的TGS巨大潜力的结论。

著录项

  • 来源
    《MRS bulletin》 |2019年第5期|392-402|共11页
  • 作者单位

    Univ Oxford Dept Engn Sci Oxford England;

    MIT Dept Nucl Sci & Engn Cambridge MA 02139 USA;

    MIT Dept Nucl Sci & Engn Cambridge MA 02139 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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