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N-V Interaction in Reinforced Concrete Elements without Stirrups

机译:没有搅拌的钢筋混凝土元件中的N-V相互作用

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This paper presents a recently conducted series of shear tests on reinforced concrete elements without stirrups subjected to normal forces. The main varying parameter is the level of axial compression. The tests include axial compression stresses ranging from 0 up to 85% of the concrete compression strength. Shear tests with such high level of axial compression have to the knowledge of the authors not been reported in the literature. Comparison of the test results with the design formula in the Eurocode 2 (EC2) reveals, that further enhancement beyond the upper limit imposed by the code can be obtained. The paper also demonstrates how the upper limit can be calculated by use of a plasticity based approach for shear strength prediction. The upper limit is established by considering two types of shear failure mode. It is shown that the upper limit determined in this way is in better agreement with the experimental observations. On the average - and when including existing test series with small axial compression levels - both methods considered lead to acceptable agreement with test results. It is argued, that the plasticity based method is preferable as it is based on a theoretical model and therefore is easier to extend to cases not covered by tests.
机译:本文介绍了最近进行的钢筋混凝土元件的一系列剪切试验,而没有经受正常力的搅拌。主要变化参数是轴向压缩的水平。该试验包括轴向压缩应力,范围为高达85%的混凝土压缩强度。具有如此高水平的轴压缩的剪切测试对文献中未报告的作者的知识。测试结果与欧洲码2(EC2)中的设计公式的比较显示,可以获得超出代码施加的上限的进一步增强。本文还演示了如何通过使用基于剪切强度预测的可塑性方法来计算上限。通过考虑两种类型的剪切失效模式来建立上限。结果表明,以这种方式确定的上限与实验观察结果更好。平均 - 当包括具有小轴向压缩水平的现有测试系列时 - 两种方法都考虑了与测试结果可接受的协议。据说,基于可塑性的方法是优选的,因为它基于理论模型,因此更容易延伸到未被测试覆盖的情况。

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