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Projectile penetration of reinforced concrete considering the effect of steel reinforcement: Experimental study and theoretical analysis

机译:钢筋混凝土钢筋考虑钢筋效果的弹性渗透:实验研究与理论分析

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摘要

In this study, experiments in which projectiles penetrated into plain and reinforced concrete targets were conducted by controlling single variables for a differential experimental design including projectile impact locations, reinforcement arrangements, reinforcement buried depths, and reinforcement bonding conditions. Based on cavity expansion theory and the dynamic response analysis of the steel reinforcement, a reinforced concrete target penetration resistance model was established. The accuracy of the model was verified using the experimental data, and the influence of the steel reinforcement arrangement on projectile penetration was analyzed. The results show that the reinforcing steel bonding effect exert an indirect resistance while the impact of the projectile with the reinforcement exert a direct resistance, which is different from direct penetration into concrete. The indirect and direct resistances against the projectile act to reduce penetration depth and target surface damage. The results calculated using the derived numerical method clearly describe the observed details of the projectile impact with the steel reinforcement, and are in good agreement with the experimental data. The indirect and direct resistances of the steel reinforcement were observed to be affected by the initial conditions of the projectile and the target including impact locations and reinforcement arrangements. It was found that increasing the reinforcement ratio and adopting a denser reinforcement arrangement can reduce the penetration depth of projectile, and better protecting the integrity of the target.
机译:在本研究中,通过控制差分实验设计的单个变量,通过控制包括射弹冲击位置,强化装置,加固埋地深度和加固粘合条件,进行普通膨胀成韧带和钢筋混凝土靶标的试验。基于腔扩展理论和钢筋的动力响应分析,建立了钢筋混凝土靶渗透模型。使用实验数据验证了模型的准确性,分析了钢筋布置对射弹渗透的影响。结果表明,增强钢粘接效果在射弹与增强件的冲击施加直接抗性的同时,与混凝土的直接渗透不同。对射弹采取的间接和直接电阻,以减少渗透深度和目标表面损坏。使用推导数值方法计算的结果清楚地描述了与钢筋的射弹冲击的观察细节,并与实验数据很好。观察到钢筋的间接和直接电阻受射弹和目标的初始条件影响,包括影响位置和强化安排。结果发现,增加加强率和采用更密集的增强装置可以降低射弹的穿透深度,更好地保护目标的完整性。

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