Experimental and Numerical Analysis of Impact Strength of Concrete Slabs

有限元法 结构工程 夏比冲击试验 跌落试验 数值分析 射弹 工作台 计算机科学 极限抗拉强度 工程类 材料科学 数学 机械工程 复合材料 数学分析 冶金 可视化
作者
Todor Vacev,Andrija Zorić,Dušan Grdić,Nenad Ristić,Zoran Grdić,Miloš Milić
出处
期刊:Periodica Polytechnica-civil Engineering [Budapest University of Technology and Economics]
被引量:8
标识
DOI:10.3311/ppci.21084
摘要

The topic of this paper is experimental and numerical analysis of the impact strength of unreinforced concrete slabs. Impact strength of concrete is significant in case of some accidental loads during exploitation. Impact strength can be determined experimentally, using Drop-weight test, Charpy test, Projectile impact test, Explosive test, etc. In this research, a numerical model for determining the impact strength of concrete slabs based on Finite element method (FEM) and high-end engineering software has been proposed. Modelling approach to this problem was applying the Explicit dynamics FEM analysis. Thereat, two different existing material models for concrete were enforced: Concrete damage plasticity model – CDP (implemented in ABAQUS/Explicit software), and the Riedel-Hiermaier-Thoma model – RHT (implemented in ANSYS Workbench software). Analysis parameters for both material models, necessary as input data, have been determined through a series of FEM analyses and validated by performed experiments, using drop-weight test. Results of the numerical analyses have been compared with the experimental ones, as well as mutually. Advantages and drawbacks of both material models are highlighted, as well as the reliability of the proposed numerical models. The proposed numerical FE models, confirmed by experiments, can be successfully used for determining impact strength of concrete slabs in further research.
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