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铜粉末药型罩试验研究 被引量:4

EXPERIMENTAL STUDY ON COPPER POWDER LINER
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摘要 研究粉末罩的力学性能,对聚能装药的设计和应用具有重要意义。本文对两种不同孔隙度的铜粉末药型罩进行了试验研究,并与紫铜药型罩进行了比较。试验结果表明,在给定的试验条件下,粉末药型罩的穿深随孔隙度的增加而增加;两者分别在0.7~3.0和1.1~2.2倍口径的炸高范围内,粉末药型罩穿深要比紫铜射流的深;孔隙度为9.3%的粉末射流在14μs内侵彻速度与紫铜射流几乎没有差别,14μs后很快降低。 Study of mechanical property of shaped charge jet is of significance to the shaped charge design and applications. Two kinds of shaped charge liners with different porosity were tested and compared with homogeneous copper one. It showed that the penetration of porous jets increased with porosity and had better mechanical property compared to the homogeneous one when the standoff distance within 0.7-3 and 1.1 -2.2 CD (charge diameters) under the given condition. And, the penetration velocity of the shaped charge jet with 9.3% porous liner was almost the same as the copper one within 14μs and decreased rapidly after 14μs.
出处 《工程爆破》 2008年第3期18-20,12,共4页 Engineering Blasting
关键词 爆炸力学 聚能射流 孔隙度 多孔药型罩 炸高 P-t曲线 Explosion mechanics Shaped charge jet Porosity Porous liner P-t curve
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参考文献7

  • 1恽寿容,赵衡阳.爆炸力学[M].北京:国防工业出版社,2005:193-202.
  • 2Lee Wenho. Oil well perforator design using 2D eulerian code[J]. International Journal of Impact Engineering, 2002 (27) : 535 -- 559.
  • 3史慧生,王志信.高效复合射孔技术[J].爆炸与冲击,2001,21(4):302-306. 被引量:8
  • 4杜明章,贾良平.无杵堵大孔径射孔弹研究[J].测井与射孔,1998(1):70-73. 被引量:2
  • 5陈军.聚能装药射流如何形成空穴[J].弹箭技术,1995,8(4):36-43. 被引量:2
  • 6Trishin Yu A, Kinelovskki S A. Effect of porosity on shaped-charge flow [J]. Combustion, Explosion, Shock Waves,2000,36 (2) :272--281.
  • 7郑哲敏.聚能射流的稳定性问题[J].爆炸与冲击,1981,1(1):6-17.

二级参考文献4

共引文献16

同被引文献39

  • 1刘贵喜.聚能射流的侵彻速度[J].弹道学报,1993,5(4):73-77. 被引量:1
  • 2范景莲,刘军,严德剑,黄伯云.细晶钨铜复合材料制备工艺的研究[J].粉末冶金技术,2004,22(2):83-86. 被引量:47
  • 3韩欢庆,姜伟,张鹏,褚征军.金属粉末在药型罩中的应用[J].粉末冶金工业,2004,14(3):1-4. 被引量:25
  • 4郭红军,石健,汪长栓,李正来,李森元,姚元文.粉末药型罩的试验研究[J].测井技术,2005,29(B02):71-73. 被引量:6
  • 5Zhilyaev A P, Langdon T G. Using High--pressure Torsion for Metal Processing: Fundamentals andApplications [J]. Progress in Materials Science, 2008,53(6) :893-979.
  • 6Wetscher F,Vorhauer A,Pippan R. Strain Harden ing during High Pressure Torsion Deformation[J]. Materials Science and Engineering, 2005,410/411 :213-216.
  • 7Hebesberger T, Stuwe H P, Vorhauer A, et al. Structure of Cu Deformed by High Pressure Torsion [J]. Acta Materialia, 2005,53 (2) : 393-402.
  • 8Kim H S. Finite Element Analysis of High Pressure Torsion Processing [J]. Journal of Materials Pro cessing Technology,2001,113(1/3) :617-621.
  • 9Vorhauer A,Pippan R. On the Homogeneity of De- formation by High Pressure Torsion [J]. Scripta Materialia, 2004,51 ( 9 ) : 921-925.
  • 10Ayisit O. The Influence of Asymmetries in Shaped Charge Performance[J]. International Journal of Impact Engineering, 2008,35 (12) : 1399-1404.

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