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INVESTIGATION ON MELTING AND COMPOSITION GRADIENT OF W-Cu SHAPED CHARGE JET DURING JET FORMATION AND PENETRATION

机译:射流形成和渗透期间W-Cu形电荷射流熔化和组合梯度的研究

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Explosive experiments of W-Cu shaped charge liner were conducted, and the composition gradient of W-Cu shaped charge jet during jet formation and penetration were systematically investigated. Results show that during the jet formation process, the W-Cu jet maintains a good compositional homogeneity and has no compositional gradient, and neither Cu phase nor W particles of W-Cu jet melts. However, during the jet penetration process, there is a large adiabatic temperature rise in the impact area of W-Cu jet under the ultra-high pressure, which causes the melting of part of the Cu phase and part of the W particles. When the W-Cu jet impacts the target, the Cu phase melts first under high temperature. The melted Cu then flows around and forms a Cu-rich layer between the jet and target. This helps to reduce the diameter of the penetration hole. Solid W particles with high energy make a major contribution to penetration depth.
机译:进行了W-Cu形电荷衬里的爆炸实验,系统地研究了射流形成和渗透期间W-Cu形电荷射流的组成梯度。结果表明,在喷射形成过程中,W-Cu射流保持良好的成分均匀性,并且没有组成梯度,并且既不是铜相和W-Cu射流熔融的颗粒。然而,在喷射穿透过程中,在超高压下W-Cu射流的冲击区域存在大的绝热温度升高,这导致部分Cu相和部分W颗粒的熔化。当W-Cu喷射撞击靶时,Cu相在高温下首先熔化。然后熔化的Cu流动并在射流和靶之间形成富含Cu的层。这有助于降低穿透孔的直径。具有高能量的固体W颗粒对穿透深度产生了重大贡献。

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