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Experimental and numerical studies on the structural response of normal strength concrete slabs subjected to blast loading

机译:爆炸荷载作用下高强混凝土板结构响应的试验与数值研究

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To assess the blast performance of concrete structures, a shock tube has been used to simulate blast loading against concrete slabs of two different mixes ordered as C45/55 and C20/25. The C45/55 slabs were tested without reinforcement, whereas the C20/25 slabs were tested both with and without reinforcement to investigate the effect of adding steel bars on the structural response. The performance of the shock tube itself was also evaluated. Compression tests on cubes and cylinders of both concrete recipes were performed to obtain material input data for numerical simulations. Numerous compression tests were also conducted using the C20/25 mix to obtain insights into the statistical variation in the material properties as concrete is inherently heterogeneous at the macroscopic level. In addition, tensile splitting tests were conducted on both materials. The shock tube tests show that the boundary conditions are important and that the reinforcement will direct the crack pattern. Fluid-structure interaction (FSI) effects are not dominant for this particular problem, because the concrete slabs suffer relatively small deformations before through-thickness cracks appear. Once cracks extend through the thickness, FSI effects may become influential, but it appears that when this occurs there is little or no residual capacity left in the slabs. Numerical simulations were used to investigate the influence of various parameters, revealing that the results are highly dependent on the boundary conditions and particularly on the tensile strength of the concrete. It was found necessary to model the entire clamping assembly to recreate the experimental observations.
机译:为了评估混凝土结构的爆炸性能,已使用减震管来模拟针对两种不同混合物(按C45 / 55和C20 / 25)的混凝土板的爆炸载荷。测试了C45 / 55楼板在没有增强的情况下,而测试了C20 / 25楼板在有和没有加固的情况下,以研究添加钢筋对结构响应的影响。还评估了减震管本身的性能。对两种混凝土配方的立方体和圆柱体进行压缩测试,以获得用于数值模拟的材料输入数据。还使用C20 / 25混合物进行了许多压缩试验,以了解材料特性的统计变化,因为混凝土在宏观上固有地是异质的。另外,对两种材料都进行了拉伸断裂试验。减震管测试表明边界条件很重要,并且钢筋将引导裂缝模式。流体-结构相互作用(FSI)的影响不是这个特定问题的主要因素,因为混凝土板在出现贯穿厚度的裂纹之前会经历相对较小的变形。一旦裂纹扩展到整个厚度,FSI效应可能会产生影响,但似乎发生这种情况时,板中几乎没有或没有剩余容量。数值模拟被用来研究各种参数的影响,表明结果高度依赖于边界条件,特别是混凝土的抗拉强度。发现有必要对整个夹紧组件建模以重新创建实验观察结果。

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