强激光加载下金属材料微喷诊断实验研究进展

Progress of experimental research on micro-ejection diagnosis of metal materials under intense laser loading

  • 摘要: 强激光加载下金属材料产生的微喷射现象及其内在的机理分析是冲击压缩科学与工程领域研究的前沿问题,相关研究对于认识材料在极端载荷条件下的动力学行为具有重要意义。近年来国内外科学家们基于各大激光装置开展了大量微喷射诊断实验研究,在喷射物性质、金属界面不稳定性增长以及微喷混合问题等方面取得了一系列重要进展。通过回顾微喷静态和动态诊断实验的研究历程,对微喷诊断实验研究方法的重要应用作了详细介绍,同时对微喷产生的主要作用机制、影响因素以及微喷混合等问题进行回顾、梳理和总结。根据当前国内外微喷诊断实验发展趋势,归纳总结目前微喷诊断实验研究结果中仍存在的不足,并对微喷射实验研究未来发展方向进行展望。

     

    Abstract: The micro-ejection phenomenon and its internal mechanism analysis of metal materials under intense laser shock are the frontier issues in the field of shock compression science and engineering. Related research is of great significance for understanding the dynamic behavior of materials under extreme loading conditions. With the continuous development of laser technology, scientists at home and abroad have carried out numerous micro-ejection diagnostic experiments based on some large laser devices in various countries in recent years, and made a series of significant progress in the properties of ejection, the growth of instability at the metal interface and the mixing mechanism of ejection. By reviewing the research history of ejecta static and dynamic diagnostic experiments, this paper describes the main mechanism of ejection, influencing factors and ejecta interface mixing mechanism in detail, and then it reviews, classifies and summarizes the important applications of micro-ejection experimental diagnostic methods. Finally, according to the current development trend of ejecta diagnostic experiments at home and abroad, the deficiencies in the current ejection experimental research results are summarized, and the future development direction of ejection experimental research is prospected.

     

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