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首页> 外文期刊>International journal of impact engineering >A model incorporating damage evolution to predict the penetration behavior of a ceramic target subjected to the long projectile impact
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A model incorporating damage evolution to predict the penetration behavior of a ceramic target subjected to the long projectile impact

机译:结合损伤演化的模型来预测长期受弹丸撞击的陶瓷靶的穿透行为

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摘要

Predicting the ballistic performance of a ceramic armor composite system requires the accurate constitutive formulation of the ceramic target material. In this study, the analytical spherical cavity expansion model was modified to simulate the penetration process of a ceramic target impacted by a long projectile, and then validated by the data in the literature. Specifically a damage evolution parameter that characterizes the modulus degradation in the ceramic was proposed and incorporated into the model. It was found that the prediction is more accurate when the model includes damage evolution. Parametric modeling further reveals that the properties of the projectile and target materials have a significant effect on the penetration response. The target resistance is sensitive to the damage evolution, especially in the ceramic of higher dynamic compressive strength and lower tensile strength. The modified model enables the selection of target materials for penetration resistance in terms of not just strength but also toughness.
机译:预测陶瓷装甲复合材料系统的弹道性能需要陶瓷靶材的准确本构公式。在这项研究中,修改了球形球洞分析模型,以模拟受长弹丸撞击的陶瓷靶的穿透过程,然后通过文献中的数据进行验证。具体而言,提出了表征陶瓷模量退化的损伤演化参数,并将其纳入模型。已经发现,当模型包括损伤演化时,预测更加准确。参数化建模进一步揭示了弹丸和目标材料的特性对穿透反应具有重大影响。目标电阻对损伤的发展敏感,尤其是在动态抗压强度较高和抗拉强度较低的陶瓷中。修改后的模型不仅可以选择强度,而且还可以选择韧性高的目标材料以防穿透。

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