钢筋混凝土平板的低速冲击响应

W. Abdulsahib, M. Abduljabbar, Bayrak S. Almuhsin
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引用次数: 3

摘要

参考混凝土板尺寸为1950x1950x100mm,承受落锤冲击载荷。通过全面的参数研究,考察了多种参数对RC板的影响。从节省成本和时间的角度来看,三维有限元是预测结构构件真实性能的一种很好的工具。结果表明,碳纤维布的使用提高了楼板的抗冲击性能。相反,开口的存在导致RC板动承载力急剧下降,开口周围应力集中。此外,改变冲击器的形状对峰值冲击载荷和冲击瞬间的极限挠度有显著影响。在本文的范围内,研究了顶部和底部加筋的RC板在落锤冲击荷载作用下的响应。基于ABAQUS/ Explicit分析,给出了冲击载荷和挠度的详细时程。本文的研究结果如下:1。有限元模型与实验数据具有较好的相关性。因此,所建立的有限元模型是研究多种参数对落锤冲击荷载作用下RC板性能影响的有效且经济的工具。2. 数值模拟结果表明,采用外粘结CFRP条对钢筋混凝土板挠度峰值的影响大于记录的冲击力。3.与平面形状的冲击器相比,半球形和弯曲形状的冲击器可以在混凝土板塑性变形较高的冲击区产生更大的侵彻深度。而平板冲击器在冲击瞬间产生较大的挠度。4. 随着冲击器半径的增大,持续时间和峰值冲击力均增大。这是因为与其他撞击器相比,使用平面撞击器(无限曲率半径)获得了更高的接触面积。5. 由于RC板刚度的降低,开口的存在(无论其形状如何)大大增加了混凝土的变形,特别是在延伸到附近支撑的开口周围。6. 研究发现,偏心冲击载荷比同心冲击载荷引起的塑性变形更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low Velocity Impact Response of Reinforced Concrete Flat Slabs
Dimensions of the reference concrete slab are 1950x1950x100 mm subjected to drop-weight impact loading. A comprehensive parametric study was performed to examine the influence of many parameters on the RC slabs. From the viewpoint of cost and time savings, a three-dimensional finite element is a very good tool to predict the real behavior of the structural elements. Results showed that the use of CFRP strips enhance the impact behavior of the slab. Contrarily, the existence of opening led to a dramatic decrease in the dynamic capacity of RC slabs with stress concentration around the openings. Furthermore, changing the shape of the impactor showed a significant effect on the peak impact load as well as the ultimate deflection at impact instant. In the scope of this paper, the response of RC slab with top and bottom reinforcements exposed to drop-weight impact loading was inspected. Time histories of impact loads and deflections were presented in detail based on ABAQUS/ Explicit analysis. The findings presented in this paper can be presented as follows: 1. The FE models show a good correlation with the experimental data. Consequently, the proposed finite element models are efficient and economical tool to explorer the effect of many parameters on the performance of RC slabs subjected to drop-weight impact load. 2. The numerical simulation confirmed that using externally bonded CFRP strips has more influence on the peak deflection of the reinforced concrete slab than the recorded impact force. 3. Comparing to the flat shape of the impactor, the hemispherical and curved shape impactor can produce large penetration depth at the impact zone with higher plastic deformations in the concrete slab. However, the flat impactor produced higher deflection at the impact instant. 4. As the radius of the impactor increases, both the duration time and the peak impact force are increased. This is because of the higher contact area was obtained when the flat impactor (infinity radius of curvature) was used as compared to other impactors. 5. Due to decreases in RC slab stiffness, the presence of openings (regardless of their shape) has considerably increased deformations in concrete especially around perimeter of the openings extended to the nearby support. 6. It has been found that the eccentric impact loading causes higher plastic deformations than the concentric one.
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