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Explosive compaction of tungsten powder using a converging underwater shock wave

机译:会聚水下冲击波爆炸压实钨粉

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摘要

Tungsten and tungsten-based alloys have wide applications in industries. Powder metallurgy is one of the major processes for production of tungsten parts, but tungsten parts with high density cannot beproduced by this method. Two explosive compaction processes using converging underwater and no-water shock wave, were applied to compact tungsten powder in the present investigation. C4 as an explosive material with a detonation velocity of 8.2 km/s applied to consolidate amorphous powder with a mean grain size of 5 μm. The density and hardness of consolidated tungsten parts were determined and by scanning electron microscope (SEM) analyzed their fragment surfaces. In addition to explosion experiments, a numerical simulation of compaction processes conducted by use of LS-DYNA program. Finally, the experimental results of two processes and numerical simulation results of the same processes compared. The results indicated that the tungsten parts without cracks and with a hardness equal to 570 Vickers and a density equal to 18.5 g/cm{sup}3 can be obtained by underwater shock wave compaction method.
机译:钨和钨基合金在工业中具有广泛的应用。粉末冶金是生产钨零件的主要工艺之一,但是这种方法不能生产高密度的钨零件。在本研究中,采用了会聚水下和无水冲击波的两种爆炸压实工艺来压实钨粉。以爆炸速度为8.2 km / s的炸药C4的形式固结平均粒径为5μm的无定形粉末。测定固结钨零件的密度和硬度,并通过扫描电子显微镜(SEM)分析其碎片表面。除爆炸实验外,还使用LS-DYNA程序对压实过程进行了数值模拟。最后,将两个过程的实验结果与相同过程的数值模拟结果进行了比较。结果表明,通过水下冲击波压实方法,可以得到无裂纹,硬度为570维氏,密度为18.5g / cm {sup} 3的钨零件。

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