Fracture of Protective Structures from Heavy Reinforcing Cement During Interaction with High-velocity Impactor

IF 0.4 Q4 MATHEMATICS
P. Radchenko, S. Batuev, A. Radchenko
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引用次数: 0

Abstract

In this work, the fracture of a reinforced concrete barrier made of heavy reinforced ce- ment is numerically simulated during normal interaction with a high-velocity titanium projectile. The projectile has the initial velocity 750 m/s. The problem of impact interaction is numerically solved by the finite element method in a three-dimensional formulation within a phenomenological framework of solid mechanics. Numerical modeling is carried out using an original EFES 2.0 software, which al- lows a straightforward parallelization of the numerical algorithm. Fracture of concrete is described by the Johnson-Holmquist model that includes the strain rate dependence of the compressive and tensile strengths of concrete. The computational algorithm takes into account the formation of discontinuities in the material and the fragmentation of bodies with the formation of new contact and free surfaces. The behavior of the projectile material is described by an elastoplastic medium. The limiting value of the plastic strain intensity is taken as a local fracture criterion for the projectile material. A detailed numerical analysis was performed to study the stress and strain dynamics of the reinforced concrete target and the effect of shock-wave processes on its fracture. The influence of reinforcement on the resistance of a heavy cement target to the penetration of a projectile has been investigated
重型增强水泥防护结构与高速撞击体相互作用时的断裂
本文对重型钢筋混凝土屏障与高速钛弹正常相互作用时的断裂进行了数值模拟。弹丸的初速度为750米/秒。在固体力学的现象学框架下,采用三维有限元方法对碰撞相互作用问题进行了数值求解。数值模拟使用原始的EFES 2.0软件进行,该软件允许数值算法的直接并行化。混凝土的断裂由Johnson-Holmquist模型描述,该模型包括混凝土抗压和抗拉强度的应变率依赖。该计算算法考虑了材料中不连续面的形成以及随着新的接触面和自由面形成的体的破碎。弹丸材料的行为用弹塑性介质来描述。将塑性应变强度的极限值作为弹丸材料的局部断裂判据。对钢筋混凝土靶体的应力应变动态特性及冲击波过程对其断裂的影响进行了详细的数值分析。研究了钢筋对重型水泥靶抗弹丸侵彻能力的影响
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
26
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