李忠盛,易同斌,陈韵如,潘复生,陈海涛,吴护林.爆炸加载下新型超高强铝合金的失效分析[J].装备环境工程,2012,9(1):39-40. LI Zhong-sheng,YI Tong-bin,CHEN Yun-ru,PAN Fu-sheng,CHEN Hai-tao,WU Hu-lin.Failure Analysis of Novel Super-high Strength Aluminum Alloy by Explosive Load[J].Equipment Environmental Engineering,2012,9(1):39-40.
爆炸加载下新型超高强铝合金的失效分析
Failure Analysis of Novel Super-high Strength Aluminum Alloy by Explosive Load
投稿时间:2011-07-21  
DOI:
中文关键词:  铝合金  爆炸加载  剪切局部化  绝热剪切带
英文关键词:aluminum alloy  explosive load  shear localization  adiabatic shear band(ASB)
基金项目:重庆市科技攻关计划(2009AC4015)
作者单位
李忠盛 重庆大学材料科学与工程学院,重庆400030;中国兵器工业第五九研究所,重庆400039; 
易同斌 中国兵器工业第五九研究所,重庆400039 
陈韵如 重庆理工大学,重庆400054 
潘复生 重庆大学材料科学与工程学院,重庆400030 
陈海涛 中国兵器工业第五九研究所,重庆400039 
吴护林 中国兵器工业第五九研究所,重庆400039 
AuthorInstitution
LI Zhong-sheng School of Materials Science and Engineering,Chongqing University,Chongqing400030,China; No.59Institute of China Ordnance Industry,Chongqing400039,China 
YI Tong-bin No.59Institute of China Ordnance Industry,Chongqing400039,China 
CHEN Yun-ru Chongqing University of Technology,Chongqing400054,China 
PAN Fu-sheng School of Materials Science and Engineering,Chongqing University,Chongqing400030,China 
CHEN Hai-tao No.59Institute of China Ordnance Industry,Chongqing400039,China 
WU Hu-lin No.59Institute of China Ordnance Industry,Chongqing400039,China 
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中文摘要:
      采用圆筒爆炸方法对新型超高强铝合金进行了内部爆破试验,用光学显微镜对破裂样品断口附近的金相组织进行了观察,研究了新型超高强铝合金的宏观断口及剪切局部化的现象。结果表明,新型超高强铝合金的断裂以剪切断裂与拉伸断裂的混合形式发生,最大剪切应力面与圆筒半径方向近似呈45°角;靠近圆筒内侧形成了绝热剪切带,并沿最大剪切应力面向外扩展。
英文摘要:
      Internal explosions test of novel super-high strength aluminum alloy was carried out by cylinder explosion method and the microstructure of fracture caused by explosion load was observed using optical microscopy. The macro facture and localization phenomena of novel super-high strength aluminum alloy were studied. The results showed that novel super-high strength aluminum alloy is in shear fracture mixed with tensile fracture under explosion load, and the angle of maximum shear stress plane with the cylinder wall’s radial direction is approximately45°; there are many adiabatic shear bands(ASB) in the inner wall,which spread along in maximum shear stress plane.
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