Chinese Journal of Lasers, Volume. 40, Issue 5, 503006(2013)

Forming Ability of the Metal Foil Forming by Laser-Driven Multi-Layered Flyer

Wang Xiao*, Liu Hui, Shen Zongbao, Zhou Jianzhong, Hu Yang, Du Daozhong, and Liu Huixia
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    References(29)

    [1] [1] P. Krehl, F. Schwirzke, A. W. Cooper. Correlation of stress-wave profiles and the dynamics of the plasma produced by laser irradiation of plane solid targets[J]. J. Appl. Phys., 1975, 46(10): 4400~4406

    [2] [2] D. L. Paisley. Confined plasma ablation for shock physics, plate launch, and material dynamics[C]. SPIE, 2006, 6261: 62611Y

    [3] [3] S. Cogan, E. Shirman, Y. Haas. Production efficiency of thin metal flyers formed by laser ablation[J]. J. Appl. Phys., 2005, 97(11): 113508

    [4] [4] R. Royal, C. Stein, C. Miglionico et al.. Laboratory simulation of hypervelocity debris[J]. International J. Impact Engineering, 1995, 17(4-6): 707~718

    [5] [5] D. C. Swift, D. L. Paisley, K. J. McClellan et al.. Equation of state of solid nickel aluminide[J]. Phys. Rev. B, 2007, 76(13): 134111~134125

    [6] [6] S. Katz, E. Grossmana, I. Gouzmana et al.. Response of composite materials to hypervelocity impact[J]. International J. Impact Engineering, 2008, 35(12): 1606~1611

    [7] [7] H. S. Niehoff, F. Vollertsen. Non-thermal laser stretch-forming[J]. Adv. Mater. Res., 2005, 6-8: 433~440

    [8] [8] H. Gao, C. Ye, G. J. Cheng. Deformation behaviors and critical parameters in microscale laser dynamic forming [J]. J. Manufacturing Science and Engineering, 2009, 131(5): 051011

    [9] [9] Y. Fan, Y. Wang, S. Vukelic et al.. Wave-solid interactions in laser-shock-induced deformation processes[J]. J. Appl. Phys., 2005, 98(10): 104904

    [10] [10] C. Gary, J. P. Daniel, M. Zhou. Microstructure and mechanical property characterizations of metal foil after microscale laser dynamic forming[J]. J. Appl. Phys., 2007, 101(6): 063108

    [11] [11] J. K. Di, M. Zhou, J. Li et al.. Micro-punching process based on spallation delamination induced by laser driven-flyer[J]. Appl. Surf. Sci., 2012, 258(7): 2339~2343

    [12] [12] Wang Xiao, Yang Kun, Liu Huixia et al.. Research and numerical simulation on metal foil forming under laser driven flyer[J]. J. Plasticity Engineering, 2009, 16(1): 25~30

    [13] [13] Fan Jinrong, Huang Shu, Zhou Jianzhong et al.. Analysis and expectation of microscale laser shock forming[J]. Laser & Optoelectronics Progress, 2012, 49(1): 010003

    [16] [16] H. X. Liu, Z. B. Shen, X. Wang et al.. Numerical simulation and experimentation of a novel laser indirect shock forming[J]. J. Appl. Phy., 2009, 106(6): 063107

    [17] [17] H. X. Liu, Z. B. Shen, X. Wang et al.. Feasibility investigations on a novel micro-embossing using laser-driven flyer[J]. Opt. Laser Technol., 2012, 44(6): 1987~1991

    [18] [18] H. X. Liu, H. J. Wang, Z. B. Shen et al.. The research on micro-punching by laser-driven flyer[J]. International J. Machine Tools & Manufacture, 2012, 54-55: 18~24

    [19] [19] A. V. Farnsworth, Jr.. Laser acceleration of thin flyers[C]. American Institute of Physics Conference Proceedings, 1996, 370: 1225~1228

    [20] [20] H. R. Brierley, D. M. Williamson, T. A. Vine. Improving laser-driven flyer efficiency with high absorptance layers[C]. American Institute of Physics Conference Proceedings, 2011, 1426: 315~318

    [21] [21] W. M. Trott. Investigation of the dynamic behavior of laser-driven flyers[C]. American Institute of Physics Conference Proceedings, 1994, 309: 1655~1658

    [22] [22] A. M. Frank, W. M. Trott. Investigation of thin laser-driven flyer plates using streak imaging and stop motion microphotography[C]. American Institute of Physics Conference Proceedings, 1996, 370: 1209~1212

    [23] [23] T. Kadono, M. Yoshida, E. Takahashi. Flyer acceleration by a high-power KrF laser with a long pulse duration[J]. J. Appl. Phys., 2000, 88(5): 2943~2947

    [24] [24] T. Kadono, M. Yoshida, N. K. Mitani. Flyer acceleration experiments using a KrF laser system with a long pulse duration and pressure and thickness of isobaric zone induced in impacted materials[J]. Laser and Particle Beams, 2001, 19(4): 623~630

    [25] [25] A. Benuzzi, M. Koenig, J. Krishnan et al.. Dynamics of laser produced shocks in foam-solid targets[J]. Physics of Plasmas, 1998, 5(8): 2827~2829

    [26] [26] K. A. Tanaka, M. Hara, N. Ozaki et al.. Multi-layered flyer accelerated by laser induced shock waves[J]. Physics of Plasmas, 2000, 7(2): 676~670

    [27] [27] Jing Fuqian. Guidance of Experimental Equation of State (Second edition)[M]. Beijing: Science Press, 1999. 59~61

    [28] [28] Dimitri Batani, Antinio Balducci, Wigen Nazarov et al.. Use of low-density foams as pressure amplifiers in equation-of-state experiments with laser-driven shock waves[J]. Phys. Rev. E, 2001, 63(4): 046410

    [29] [29] Luo Guoqiang. Quasi-Isentropic Compressive Characteristics of W-Mo-Ti-Mg System Flyer-Plate with Graded Wave Impedance[D]. Wuhan: Wuhan University of Technology, 2004. 10~16

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    Wang Xiao, Liu Hui, Shen Zongbao, Zhou Jianzhong, Hu Yang, Du Daozhong, Liu Huixia. Forming Ability of the Metal Foil Forming by Laser-Driven Multi-Layered Flyer[J]. Chinese Journal of Lasers, 2013, 40(5): 503006

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    Paper Information

    Category: laser manufacturing

    Received: Dec. 27, 2012

    Accepted: --

    Published Online: May. 7, 2013

    The Author Email: Xiao Wang (wx@ujs.edu.cn)

    DOI:10.3788/cjl201340.0503006

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