首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Numerical study on anti-penetration process of alumina ceramic (AD95) to tungsten long rod projectiles
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Numerical study on anti-penetration process of alumina ceramic (AD95) to tungsten long rod projectiles

机译:氧化铝陶瓷(AD95)对钨长棒弹丸抗侵彻过程的数值研究

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摘要

Numerical studies were conducted on the ballistic performance of alumina ceramic (AD95) tiles based on depth of penetration method, when subjected to normal impact of tungsten long rod projectiles at velocities ranging from 1100 to 2000 ms-1. The residual depth on after-effect target was derived in each case, and the ballistic efficiency factor was determined using the corresponding penetration depth on medium carbon steel. Anti-penetration experiment study of the AD95 ceramic tiles to tungsten long rod projectiles has been carried out to verify the accuracy of numerical simulation model. The result shows that numerical simulation results agree well with the corresponding experiment results and AD95 ceramic has excellent ballistic performance than medium carbon steel. The ballistic efficiency factor increases with velocity increasing when impact velocity lower than 1300 ms-1, and when it was higher than 1300 ms-1 the ballistic efficiency factor has almost no difference.
机译:基于渗透深度法,当钨长棒射弹在1100至2000 ms-1的速度下受到正常冲击时,对氧化铝陶瓷(AD95)瓷砖的弹道性能进行了数值研究。在每种情况下都得出后效目标的残余深度,并使用相应的在中碳钢上的穿透深度确定弹道效率因子。为了验证数值模拟模型的准确性,对AD95瓷砖对钨长棒弹丸进行了抗侵彻实验研究。结果表明,数值模拟结果与相应的实验结果吻合良好,AD95陶瓷的弹道性能优于中碳钢。当冲击速度低于1300 ms-1时,弹道效率因数随速度的增加而增加;而当冲击速度高于1300 ms-1时,弹道效率因数几乎没有差异。

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