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用高速摄影研究了钢管膨胀历程,并对破碎机制进行了分析.结果表明:材料动态塑性是决定破片最终速度的主要因素;圆管膨胀时外表面形成以剪切为主的裂纹,并向内扩展,接近内表面的绝热剪切带伴随着圆管的膨胀而扩展,并未出现失稳现象,但在正应力的作用下成为优先的断裂通道、决定破片的尺寸和形态;中碳Si-Mn贝氏体钢与50SiMnVB钢的破碎性能相近,但贝氏体钢动态塑性很更好,破碎前的膨胀量较大、更有利于提高破片初速,是弹箭比较理想的候选材料.

By means of high-speed photography, the history of expansion of explosively loaded steel tubes havebeen recorded, and the fragmentation mechanisms have been analyzed. The results show that dynamical ductil-ity dominated final velocity of fragments. During tube expansion, the shear fracture appears preferentially a-long the adiabatic shear bands under positive stress, so the adiabatic shear band determines the size and shapeof fragments. Though the fragmentation behaviour of medium carbon Si - Mn bainific steel is close to that ofsteel 50SiMnVB, medium carbon Si - Mn bainitic steel is an ideal candidate material for the tubular bombs be-cause it is better in dynamical ductility, which can enable the tubes to gain high speeds before fragmentation.

参考文献

[1] Taylor G I.The fragmentation of tubular bombs[M].The Scientific Papers of Sir G.I.Taylor Cambridge university press,1963:387-390.
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[3] Charles E .Computational modeling of explosivefiled cylinders[J].International Journal of Engineering Science,1985,23:1317-1330.
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[5] 胡八一 .内邵爆炸加载下的钢管膨胀断裂研究[J].爆炸与冲击,1993,13(01):49-54.
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[7] MOCK W .Fragmentation behaviour of Annco iron and HF - 1 steel explos ive-filled cylinders[J].Journal of Applied Physics,1983,54(05):2344-2351.
[8] 董瀚 .高强度榴钢的破片机理研究[J].爆炸与冲击,1996,16(04):367-372.
[9] WTTMAN C L .Observation of an adiabatic shear band in AISI 4340 steel by high-voltage transmission electron microscopy[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1990,21:707-716.
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