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6066铝合金弹体破片形成机理 被引量:2

Fracture behavior of 6066 aluminum alloy bomb casings
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摘要 以挤压及热处理 (T6态 )工艺制备 6 0 6 6铝合金圆管型模拟炸弹 ,进行了力学性能测试、砂坑中爆破试验及扫描电镜断口形貌观察。研究结果表明 :随着应变速率的提高 ,6 0 6 6铝合金强度升高 ,塑性下降 ,断口从韧性向脆性转变。爆破破片断口形貌由拉伸断裂、剪切断裂及其过渡区组成 ,但以拉伸断裂为主。6 0 6 6铝合金作为弹体材料密度小、装药量大、爆轰力大 ,故而破片率及破片初速大 ,杀伤力大。通过破片的断裂特征 ,分析了与材料动态断裂行为相关的形貌特征 。 Tubular bomb casings of 6066 aluminum alloy were manufactured by extrusion and T6 heat treatment. The strength of 6066 aluminum alloy was increased and the ductility was decreased with the increase of strain rate. The fracture behavior was investigated in consideration of fragment rate. The result shows that shear deformation occurs at the interior surface of the casing and tensile deformation at the outer surface under high explosive detonation pressure. Expansion and fracture of explosive filled 6066 aluminum alloy cylinders were analyzed. The relations between material characters combining with loading strength and deformation character were also discussed.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2002年第2期338-341,共4页 The Chinese Journal of Nonferrous Metals
基金 国家"九五"军工配套项目 (中色科技 (2 0 0 0 ) 0 0 16
关键词 铝合金 破片机理 力学性能 榴弹 aluminum alloy fracture behavior mechanical property
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参考文献2

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同被引文献18

  • 1李慎兰,黄昌龙,黄志其,陈维平.固溶处理工艺对7003铝合金组织和性能的影响[J].材料热处理学报,2015,36(2):42-48. 被引量:22
  • 2杨守杰,戴圣龙.航空铝合金的发展回顾与展望[J].材料导报,2005,19(2):76-80. 被引量:202
  • 3丁向群,何国求,陈成澍,刘小山,朱正宇.6000系汽车车用铝合金的研究应用进展[J].材料科学与工程学报,2005,23(2):302-305. 被引量:94
  • 4刘静安,谢水生.铝合金材料应用与开发[M].北京:冶金工业出版社,2011.5.
  • 5Cheng N P, Zeng S M, Liu Z Y. Preparation, microstmctures and deformation behavior of SiCP/6066AI composites proluced by PM route[J]. Journal of Materials Processing Technology, 2008, 202 ( 1 ) : 27-40.
  • 6FengC, Shou W B, LIU H Q, et al. Effect of aging time on miemstructure and mechanical properties of AI-Zn-Mg-Cu alloys used for oil drill pipes [ J ]. Transactions of Nonferrous Metals Society of China, 2015 (11) : 3 515-3 522.
  • 7Argade G R, Kumar N, Mishra R S. Stress corrosion cracking susceptibility of ultrafine grained A1-Mg.Sc alloy [ J ]. Materials Science and Engineering A, 2013, 565(10) :80-89.
  • 8Subbaiah K, Geetha M, Govindaraju M, et al. Mechanical Properties of Friction Stir Welded Cast A1-Mg-Sc Alloys [ J ]. Transactions of the Indian Institute of Metals, 2002, 65(2) : 155- 158.
  • 9Singh V, Prasad K S, Gokhale A A. Microstructure and age hardening response of cast A1-Mg-Sc-Zr alloys [ J]. Journal of Materials Science, 2004, 39(8) : 2 861-2 864.
  • 10Ning Z L, Guo S, Cao F Y, et al. Microstructural evolution during extrusion and ECAP of a spray-deposited AI-Zn-Mg-Cu-Sc-Zr alloy ~ J]. Journal of Materials Science, 2010, 45 (11 ) : 3 023-3 029.

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