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Quantification of shear strength in reinforced concrete beams using digital image correlation: Experimental and analytical study

机译:使用数字图像相关性钢筋混凝土梁剪切强度的定量:实验和分析研究

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This article presents an experimental study aiming to provide reliable experimental data for the prediction of the shear strength of reinforced concrete beams without stirrups. The shear strength results obtained from the proposed model as well as those from the design codes (ACI 318, Eurocode 2 and BS 8110) are compared with the database containing 700 beams made of both high strength concrete and normal strength concrete. Furthermore, the experimental results were used to assess the contribution of each shear mechanism obtained from Chen’s, Cavagnis’s and Fernández Ruiz’s models. The contribution of these various shear-transfer actions is also quantified experimentally, using a digital image correlation. As a result, the measured contributions of dowel action, aggregate interlock and compression zone to the total shear resistance were estimated as 45% to 50%, 20% to 35% and 17% to 31%, respectively, for high strength concrete beams. On the contrary, the average test-to-predicted contribution of the shear-transfer action ratio determined by the Chen formula is 1.15 for short beams, whereas the Fernández Ruiz and the Cavagnis models yielded average ratios of 1.04 and 1.52, respectively, for slender beams. The proposed formulae give a rational prediction for either both short and slender beams, and yield accurate and consistent results compared to the other models used in this study, with a lowest average value of the test-to-predicted at 1.08 and that of the coefficient of variation at 23.06%, particularly for short beams. However, ACI 318 is the only code that does not take into account the size effect, leading to a severe underestimation of the shear strength for short beams.
机译:本文介绍了一个实验研究,旨在提供可靠的实验数据,用于预测钢筋混凝土梁的剪切强度而没有搅拌。将从所提出的模型的剪切强度以及来自设计代码(ACI 318,EUROGE 2和BS 8110)的剪切强度结果与包含高强度混凝土和正常强度混凝土的700梁的数据库进行比较。此外,实验结果用于评估从陈,卡通和FernándezRuiz模型中获得的每种剪切机制的贡献。使用数字图像相关性,还通过数字图像相关来通过实验量化这些各种剪切传递动作的贡献。结果,用于高强度混凝土梁的测定为销量,聚集互锁和压缩区至总剪切抗性的销量,聚集互锁和压缩区至总剪切电阻的贡献分别为45%至50%,20%至35%和17%至31%。相反,对于短梁,由陈配方确定的剪切转移动作比的平均试验到预测贡献为1.15,而FernándezRuiz和Cavagnis模型分别产生了1.04和1.52的平均比率,用于细长梁。所提出的公式对短和细长梁的理性预测,与本研究中使用的其他模型相比,得到准确和一致的结果,具有在1.08的测试到预测的最低平均值和系数的最低平均值变化为23.06%,特别是对于短梁。然而,ACI 318是唯一没有考虑到尺寸效应的代码,导致严重低估短梁的剪切强度。

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