激光驱动加载用多层飞片的制备与优化设计

IF 1.1 4区 物理与天体物理 Q4 PHYSICS, APPLIED Laser and Particle Beams Pub Date : 2022-03-03 DOI:10.1155/2022/4546178
Wei Guo, Weichan Cao, Xiang Wang, Qiqi Peng, Lizhi Wu
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引用次数: 0

摘要

激光驱动飞片加载技术是高能物理、冲击波物理和爆炸起爆等领域的重要加载技术。如何利用激光产生高速、完整的飞片是激光驱动中关注的问题。采用磁控溅射法制备了性能可调的Al/Al2O3/Al和TiO2/Al/Al2O3/Al多层飞片(mfp),并采用扫描电镜(SEM)、激光反射光谱仪和差热分析(DTA)对其进行了分析。利用光子多普勒测速(PDV)和超高速视频分析了结构和材料对MFPs输出性能的影响。形貌结果表明,mfp具有均匀、清晰的层间边界。在43.1 J/cm2的激光烧蚀条件下,通过调整薄膜厚度、结构和铝热剂材料,将MFP速度控制在4.0 ~ 6.0 km/s范围内。其中,有铝热烧蚀层的高能飞团,由于TiO2/Al的预储存能量,最终速度最高,为5.38 km/s。将Al2O3的厚度从0.4 μm适当增加到0.8 μm,可实现飞片完全飞行至3.72 mm。此外,TiO2/Al铝热膜具有反应放热的特性,且激光反射率(72.13%)低于Al层(80.55%),这解释了含能飞片的速度增强效果。本研究为提高mfp的输出性能提供了一种简便的策略,为激光驱动技术的实际应用提供了便利。
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Fabrication and Optimization Design of Multilayer Flyer Plates for Laser-Driven Loading
The laser-driven flyer plate is an important loading technology in high energy physics, shock wave physics, and explosive initiation application. How to generate a high-velocity and intact flyer plate by using the laser is a matter of concern for laser driving. In this study, the multilayer flyer plates (MFPs) of Al/Al2O3/Al and TiO2/Al/Al2O3/Al with adjustable performance were designed and fabricated by magnetron sputtering and analyzed by scanning electron microscopy (SEM), laser reflectance spectrometer, and differential thermal analysis (DTA). The effects of the structure and material on the output performance of MFPs were analyzed by photon Doppler velocimetry (PDV) and ultrahigh-speed video. The morphology results showed that the structure of MFPs had uniform and clear boundaries between side-by-side layers. The MFP velocity was controlled in the range of 4.0–6.0 km/s by adjusting the film thickness, structure, and thermite material with 43.1 J/cm2 laser ablation. Among them, the energetic flyers with the thermite ablation layer had the highest final velocity of 5.38 km/s due to the prestored energy of TiO2/Al. By appropriately increasing the thickness of Al2O3 from 0.4 μm to 0.8 μm, the complete flight of the flyer plate to 3.72 mm can be realized. In addition, TiO2/Al thermite film had characteristics of reaction heat release and lower laser reflectivity (72.13%) than the Al layer (80.55%), which explained the velocity enhancement effect of energetic flyer plates. This work provides facile strategy to enhance the output performance of MFPs, which may facilitate the practical applications of laser driving technology.
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来源期刊
Laser and Particle Beams
Laser and Particle Beams PHYSICS, APPLIED-
CiteScore
1.90
自引率
11.10%
发文量
25
审稿时长
1 months
期刊介绍: Laser and Particle Beams is an international journal which deals with basic physics issues of intense laser and particle beams, and the interaction of these beams with matter. Research on pulse power technology associated with beam generation is also of strong interest. Subjects covered include the physics of high energy densities; non-LTE phenomena; hot dense matter and related atomic, plasma and hydrodynamic physics and astrophysics; intense sources of coherent radiation; high current particle accelerators; beam-wave interaction; and pulsed power technology.
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