Ballistic property of steel/ceramic/steel composite armor
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摘要: 為優化設計鋼/Al2O3陶瓷/鋼輕型復合裝甲板,結合薄板沖塞的極限速度方程與Florence模型建立了鋼/Al2O3陶瓷/鋼輕型復合裝甲板的抗彈極限速度預測模型.根據模型,分析了不同面板、背板及陶瓷厚度組合對鋼/Al2O3陶瓷/鋼輕型復合裝甲板抗彈極限速度的影響,并通過7.62mm普通鋼芯彈侵徹鋼/Al2O3陶瓷/鋼復合裝甲板試樣實驗驗證了該模型的正確性.結果表明,鋼面板厚度小于1.0mm時,復合板抗彈極限速度計算值和實驗值之間的相對誤差在15%以下,陶瓷芯與鋼背板的厚度比保持在1.5~4.5之間比較合理.Abstract: A model for predicting the ballistic limit velocity was developed by combining Florence's model with the plug equation for the projectile penetration into sheet, The effects of structure parameters, including facesheet thickness, ceramic core thickness and back plate thickness, on the ballistic limit velocity of steel/ceramic/steel composite armor against 7.62 mm plain steel projectiles was investigated to optimize the armor structure and identify the validity of the model analytically and experimentally. The results reveal that the model is in good agreement with experimental values, with the relative error less than 15%, and it is optimum as the thickness ratio of ceramic tile to steel back sheet is between 1.5 to 4.5.
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Key words:
- composite armor /
- ceramic /
- ballistic property /
- limit velocity /
- mathematical model
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