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An improved criterion to minimize FE mesh-dependency in concrete structures subjected to blast and impact loading

机译:一种改进的标准,可最大程度地减少爆炸和冲击载荷作用下混凝土结构中有限元网格的依赖性

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In the context of an increasing need for reliability and safety in concrete structures under blast and impact loading conditions, the behavior of concrete under high strain rate condition has been an important issue. Since concrete subjected to impact loading associated with high strain rate shows quite different material behavior from that in the static state, several material models are proposed and used to describe the high strain rate behavior under blast and impact loading. In the process of modelling, in advance, mesh dependency in the used finite element (FE) is the key problem because simulation results under high strain-rate condition are quite sensitive to applied FE mesh size. It means that the accuracy of simulation results may be deeply dependent on FE mesh size in simulations. This paper introduces an improved criterion which can minimize the mesh-dependency of simulation results on the basis of the fracture energy concept, and HJC (Holmquist Johnson Cook), CSC (Continuous Surface Cap) and K&C (Karagozian & Case) models are examined to trace their relative sensitivity to the used FE mesh size. To coincide with the purpose of the penetration test with a concrete plate under a projectile (bullet), the residual velocities of projectile after penetration are compared. The correlation studies between analytical results and the parametric studies associated with them show that the variation of residual velocity with the used FE mesh size is quite reduced by applying a unique failure strain value determined according to the proposed criterion.
机译:在爆炸和冲击载荷条件下对混凝土结构的可靠性和安全性的需求日益增长的背景下,在高应变率条件下混凝土的性能已成为重要的问题。由于承受与高应变率相关的冲击载荷的混凝土表现出与静态状态完全不同的材料性能,因此提出了几种材料模型并将其用于描述爆炸和冲击载荷下的高应变率性能。在建模过程中,预先考虑所用有限元(FE)中的网格相关性是关键问题,因为在高应变率条件下的仿真结果对所应用的FE网格尺寸非常敏感。这意味着仿真结果的准确性可能在很大程度上取决于仿真中的有限元网格尺寸。本文介绍了一种改进的准则,该准则可以基于断裂能概念将模拟结果的网格相关性最小化,并对HJC(霍姆奎斯特·约翰逊·库克),CSC(连续表面盖)和K&C(Karagozian和Case)模型进行了研究。跟踪它们相对于所用有限元网格尺寸的相对灵敏度。为了与在弹丸(子弹)下的混凝土板进行渗透测试的目的一致,比较了弹丸在渗透后的残余速度。分析结果和与之相关的参数研究之间的相关性研究表明,通过应用根据建议标准确定的唯一破坏应变值,可以大大减小残余速度随所用有限元网格尺寸的变化。

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