High speed deformation behavior of the electroformed nickel liner of shaped charge
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摘要: 利用直流電鑄法制備純鎳藥型罩,對其爆炸變形前后的微觀組織和織構進行對比觀察,探討電鑄鎳藥型罩爆炸變形后侵徹體的高速變形行為.結果表明,電鑄鎳藥型罩的晶粒形態由變形前的柱狀晶轉變為等軸晶,變形前存在的微觀織構消失.侵徹體在高速變形過程中經歷的是絕熱變形過程.侵徹體與靶體的相互作用促使射流發生融化,并與靶體熔融形成鐵鎳合金.熔融的鐵鎳合金與侵徹體后續跟進的杵體發生接觸,在杵體外部邊緣部位凝固,生成復合組織.杵體在整個變形過程中經歷了典型的動態回復和動態再結晶過程.Abstract: The pure nickel liner of shaped charge was prepared by using a direct current electroforming technique. The high speed deformation mechanism of the jet formed by explosive detonation in the electroformed nickel liner of shaped charge was discussed by comparing the microstructure and microtexture of the nickel liner of shaped charge before and after explosive detonation. Experimental results show that the original grains with a columnar shape change to equiaxed grains and fibber textures existed in the nickel liner of shaped charge disappear due to high speed explosive detonation. The jet and slug formed by explosive detonation undergo an adiabatic process. A melting phenomenon was observed due to the interaction between the jet and target, and a Fe-Ni alloy is formed. The melting Fe-Ni alloy forms a complex structure by solidification around the surface of the slug when it meets the following slug. It is indicated that dynamic recovery and recrystallization play an important role for high speed deformation in the electroformed nickel liner of shaped charge during the explosive detonation process.
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Key words:
- electroforming /
- nickel /
- shaped charge liner /
- detonation /
- dynamic recrystallization
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