Destruction Study of Tantalum Target Impacted by 12MeV Electron Beam

  • The radiation destructive appeatance caused by intensive electron beam current with 12MeV energy reveals different mechanism of fracture from those caused by lower energy electron or X-ray due to the strong penetrating ability of the electron. In the paper, the fracture profiles of the 1.2mm Ta target, which is destructed by 12MeV electron beam, are studied using microscope and scanning electron microscope. The result indicates mechanical tear is the major reason, and moreover, the tear fracture is almost symmetrical. In order to understand this, the energy deposit of electron beam along the depth of the target is given out by Monte-Carlo simulation, which is also symmetrical and higher in center, lower in sides. A preliminary conclusion on the major destructing mechanism of the target is drawn out: 12MeV electron beam, which has strong penetration ability, can heat the whole target almost at the same time. The expansion of the center part of the target is constrained by the boundary which results in two shock waves with most destructive power produced in the two sides of center. After the shock waves reach the free surfaces of the target, by wave reflection, two rarefaction waves will propagate inward, then symmetric tearing happens when the two waves meet at the center region of the target.
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  • [1] .  Burns M J et al . Status of The DARHT Phase 2 Long-Pulse Accelerator.In PAC2001. Chicago :2001. 3252. ZHOU Nan , QIAO Deng-Jiang. Materials Dynamics Under Pulse Beam Radiation. Beijing : National Defence industrial Publisher ,2002. 485 —486 (in Chinese)(周南,乔登江. 脉冲束辐照材料动力学. 北京:国防工业出版社,2002. 485 —486)3. ZHOU Nan ,QIAO Deng-Jiang. Materials Dynamics Under Pulse Beam Radiation. Beijing : National Defence industrial Publisher , 2002. 163(in Chinese)(周南,乔登江. 脉冲束辐照材料动力学. 北京:国防工业出版社,2002. 163)4. ZHANG Ting-Jie , ZHANG De-Yao , DING Xu. Rare Metal Materials and Engineering , 1998 ,27 :32 —36 (in Chinese)(张廷杰,张德尧,丁旭. 稀有金属材料与工程,1998 ,27 :32 —36)5. Walter R. Nelson , Hideo Hirayama and David W. O. Rogers , THEEGS4 CODE SYSTEM, SLAC-Report-265 ,December 19856. Groom D E et al . European Physical Journal , 2000 , C15 :17. ZHOU Nan , QIAO Deng-Jiang. Materials Dynamics Under Pulse Beam Radiation. Beijing : National Defence industrial Publisher , 2002. 489(in Chinese)(周南,乔登江. 脉冲束辐照材料动力学. 北京:国防工业出版社,2002. 489)8. DENG Jian-Jun. Beam-Target Interaction and Measurement of X-Rey Spot Size. In : Editorial Office of High Power Laser and Particle Beams.Proceedings of The Conference on 10MeV Linear Induction Accelerator.Mianyang : High Power Laser and Particle Beams Press , 1994. 206 —209. (in Chinese)(邓建军. 束靶相互作用及X光焦斑测量. 见:强激光与粒子束编辑部编辑. 10MeV 感应直线加速器论文集. 绵阳:强激光与粒子束出版社,1994. 206 —209)9. LI Qing-Yuan , JIANG Yuan-Kun , Du Shi-Gang et al . Explosion and Shock Waves , 1985 ,5(3) : 27 —34 (in Chinese)(李清源,蒋垣昆,杜世刚等. 爆炸与冲击,1985 ,5 (3) :27 —34)
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LONG Ji-Dong, LIN Yu-Zheng, LUO Fei, GU Zhuo-Wei and SHI Jin-Shui. Destruction Study of Tantalum Target Impacted by 12MeV Electron Beam[J]. Chinese Physics C, 2004, 28(5): 564-568.
LONG Ji-Dong, LIN Yu-Zheng, LUO Fei, GU Zhuo-Wei and SHI Jin-Shui. Destruction Study of Tantalum Target Impacted by 12MeV Electron Beam[J]. Chinese Physics C, 2004, 28(5): 564-568. shu
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Received: 2003-06-26
Revised: 1900-01-01
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Destruction Study of Tantalum Target Impacted by 12MeV Electron Beam

    Corresponding author: LONG Ji-Dong,
  • Department of Engineering Physics of Tsinghua University,Beijing 100084,China2 Engineering Physics Institute of China,Mianyang 621900,China

Abstract: The radiation destructive appeatance caused by intensive electron beam current with 12MeV energy reveals different mechanism of fracture from those caused by lower energy electron or X-ray due to the strong penetrating ability of the electron. In the paper, the fracture profiles of the 1.2mm Ta target, which is destructed by 12MeV electron beam, are studied using microscope and scanning electron microscope. The result indicates mechanical tear is the major reason, and moreover, the tear fracture is almost symmetrical. In order to understand this, the energy deposit of electron beam along the depth of the target is given out by Monte-Carlo simulation, which is also symmetrical and higher in center, lower in sides. A preliminary conclusion on the major destructing mechanism of the target is drawn out: 12MeV electron beam, which has strong penetration ability, can heat the whole target almost at the same time. The expansion of the center part of the target is constrained by the boundary which results in two shock waves with most destructive power produced in the two sides of center. After the shock waves reach the free surfaces of the target, by wave reflection, two rarefaction waves will propagate inward, then symmetric tearing happens when the two waves meet at the center region of the target.

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