Page 48 - 《含能材料》火工品技术合集 2015~2019
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激 光 驱 动 飞 片 飞 行 特 征 研 究 进 展                                                                       263

                Pentaerythritol Tetranitrate using fiber-coupled laser-driven  [27] Stein C,Roybal R,Tlomak P,et al. A review of hypervelocity
                flyer plates[C]//Optical Technologies for Arming,Safing,Fuz‑  debris testing at the Air Force Research Laboratory[J]. Space
                ing,and Firing III,San Diego,CA,2007,6662:66620D     Debris,2004,2(4):331-356.
                (1-12).                                         [28] Jr Farnsworth A V,Trott W M,Setchell R E. A computational
           [13] Mattel T,Shaw‑Stewart J,Schneider C W,et al. Laser in‑  study of laser driven flyer plates[C]//AIP Conference Proceed‑
                duced forward transfer aluminum layers:Process investigation  ings,2001,CP620:1355-1358.
                by time resolved imaging[J]. Applied Surface Science,2012,  [29] 牛锦超,龚自正,曹燕,等 . 8 km/s 激光驱动飞片发射技术实验
                258:9352-9354.                                       研究[J]. 爆炸与冲击,2014,34(2):129-136.
           [14] Liu C Y,Mao X L,Greif R,et al. Time Resolved Shadowgraph  NIU Jin‑chao,GONG Zi‑zheng,CAO Yan,et al. Experimen‑
                Images of Silicon during Laser Ablation Shockwaves and Parti‑  tal research on laser‑driven flyer plates up to 8 km/s[J]. Explo⁃
                cle Generation[C]//8th International Conference on Laser Ab‑  sion and Shock Waves,2014,34(2):129-136.
                lation,2007,59:338-342.                         [30] 高 瑀 含 . 高 斯 光 束 整 形 技 术 研 究[D]. 长 春 :长 春 理 工 大 学 ,
           [15] 刘寿先,温伟峰,袁树云,等 . 分幅面成像任意反射面速度干涉                       2012.
                仪 诊 断 激 光 驱 动 飞 片 全 场 速 度[J]. 光 学 学 报 ,2013,33(9):   GAO Yu‑han. Research of Gaussian beam shaping[D]. Chang‑
                0912007(1-7).                                        chun: Changchun University of Science and Technology,
                LIU Shou‑xian WEN Wei‑feng,YUAN Shu‑yun,et al. Full  2012.
                field velocity measurement of laser‑driven fllyer using fram ‑  [31] Brown K E,Shaw W L,Zheng X,et al. Simplified laser‑driven
                ing‑imaging velocity interferometer system for any reflector[J].  flyer plates for shock compression science[J]. Review of Scien⁃
                Acta Optica Sinica,2013,33(9):0912007(1-7).          tific Instruments,2012,83:103901(1-12).
           [16] Celliers P M,Erskine D J,Sorce C M,et al. A high‑resolution  [32] Fujiwara H,Brown K E,and Dlott D D. High‑energy flat‑top
                two-dimensional imaging velocimeter[J]. Review of Scientific  beams for laser launching[J]. Applied Opitcs,2010,49(19):
                Instrument,2010,81(3):035101.                        3723-3731.
           [17] Banishev A A,Shaw W L,Bassett W P,et al. High‑speed la‑  [33] 董洪建,童靖宇,黄本诚 . 真空环境下空间碎片超高速撞击试验
                ser‑launched flyer impacts studied with ultrafast photography  研究[J]. 真空科学与技术学报,2004,24(2):109-112.
                and velocimetry[J]. Journal of Dynamic Behavior Materials,  DONG Hong‑jian,TONG Jing‑yu,HUANG Ben‑cheng. Im‑
                2016(2):194-206.                                     pact simulation of hypervelocity space debris in vacuum envi‑
           [18] Yeager J D,Bowden P R,Guildenbecher D R,et al. Charac‑  ronment[J]. Vacuum Science and Technology(China),2004,
                terization of hypervelocity metal fragments for explosive initia‑  24(2):109-112.
                tion[J]. Journal of Applied Physics,2017,122:035901(1-9).  [34] Gurney R W. The initial velocites of fragments from bombs,
           [19] Willey T M,Champley K,Hodgin R,et al. X‑ray imaging and  shell,grenades[R]. Ballistic Research Laboratory Report No.
                3D reconstruction of in‑flight exploding foil initiator flyers[J].  405,1943.
                Journal of Applied Physics,2016,119:235901(1-4).  [35] 韩秀凤,严楠,蔡瑞娇 . 对炸药驱动飞片速度的理论计算方法的
           [20] Curtis A D,Banishev A A,Shaw W L,et al. Laser‑driven flyer  分析与评价[J]. 火炸药学报,2005,28(1):63-66.
                plates for shock compression science:Launch and target im‑  HAN Xiu‑feng,YAN Nan,CAI Rui‑jiao,et al. Analysis and as‑
                pact probed by photon Doppler velocimetry[J]. Review of Sci⁃  sessment on theoretical calculation methods for the velocity of
                entific Instrument. 2014,85(4):043908(1-12).         explosive‑driven flyer plate[J]. Chinese Journal of Explosives
           [21] Rességuier T D,Signor L,Dragon A,et al. Experimental inves‑  and Propellants,2005,28(1):63-66.
                tigation of liquid spall in laser shock‑loaded tin[J]. Journal of  [36] Lawrence R J,Trott W M. Theoretical analysis of a pulsed la‑
                Applied Physics,2007,101(1):013506(1-7).             ser‑driven hypervelocity flyer launcher[J]. International Jour⁃
           [22] 郭俊峰,曾庆轩,李明愉,等 . 飞片材料对微装药驱动飞片形貌                       nal of Impact Engineering,1993,14:439-449.
                的影响[J]. 高压物理学报,2017,31(3):315-320.              [37] 孙承纬,庄仕明,王春彦 . 激光驱动飞片冲击引爆炸药的计算
                GUO Jun‑feng,ZENG Qing‑xuan,LI Ming‑yu,et al. Influnce  [J]. 强激光与离子束,1997,9(3):471-476.
                of flyer material on morphology of flyer driven by micro charge  SUN Cheng‑wei,ZHUANG Shi‑ming,WANG Chun‑yan. Cal‑
                [J]. Chinese Journal of High Pressure Physics,2017,31(3):  culation of shock initiation of explosives impacted by the la‑
                315-320.                                             ser‑driven flyer[J]. High Power Laser and Particle Beams,
           [23] Signor L,Rességuier T D,Dragon A,et al. Investigation of  1997,9(3):471-476.
                fragments size resulting from dynamic fragmentation in melted  [38] 朱励,泰明,郝军 . 一个描述强激光驱动飞片高速运动的 Gur‑
                state of laser shock‑loaded tin[J]. International Journal of Im⁃  ney 模型[J]. 四川大学学报,2005,42(4):775-778.
                pact Engineering,2010,37( 8):887-900.                ZHU Li,XIAO Tai‑Ming,HAO Jun. A Gurney model for the
           [24] Lescoute E,Rességuier T D,Chevalier J M,et al. Soft recov‑  high velocity launch of laser‑driven foil plate[J]. Journal of Si⁃
                ery technique to investigate dynamic fragmentation of laser  chuan University(Natural Science Edition),2005,42(4):
                shock‑loaded metals[J]. Applied Physics Letters,2009,95  775-778.
                (21):211905(1-3).                               [39] Mallick D,Shaeffer M,Dean S,et al. Investigating the veloci‑
           [25] Cottet F,Romain J P. Formation and decay of laser‑generated  ty envelope of laser‑driven micro‑flyers for hypervelocity im ‑
                shock waves[J]. Physics Review A,1982,25(1):576-579.  pact experiments [J]. Procedia Engineering, 2017, 204:
           [26] Watson S,Field J E. Measurement of the ablated thickness of  215-222.
                films in the launch of laser‑driven flyer plates[J]. Journal of  [40] 赵翔,苏伟,李东杰,等 . 激光驱动飞片的动量耦合模型研究
                Physics D:Applied Physics,2000,33(2):170-174.       [J]. 强激光与离子束,2007,19(8):1275-1278.


            CHINESE JOURNAL OF ENERGETIC MATERIALS              含能材料                2019 年  第 27 卷  第 3 期 (255-264)
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