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Shear strength and deformation modeling of conventionally reinforced short coupling beams

机译:传统增强短耦合梁的剪切强度和变形建模

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摘要

In this paper, a mechanics based analytical truss model is proposed to predict the shear strength and deformation of conventionally reinforced coupling beams with span-to-height ratios less than 1.75 (referred to as short coupling beams). The model considers the yield of only parts of stirrups, and its load path is composed of a direct main strut connecting the compression zones at both ends of the beam and secondary struts balancing with stirrups. By satisfying the compatibility condition at the intersection node of the struts, the assignment of the applied shear load in the main and secondary struts, as well as the shear load-transverse displacement relationship of the beam, are determined. The shear strength predictions by the truss model are compared with test results of 37 conventional reinforced short coupling beams, which shows that it can accurately predict the shear strength with a coefficient of variation (COV) of 0.052, while the predictions provided by ACI 318-19 and GB 50010-2010 are relatively inaccurate (the COVs are 0.19 and 0.21, respectively). In addition, the skeleton curves of 27 short coupling beams are calculated by the truss model, and the results show that the predictions are in good agreement with the test results. In order to simplify the calculation, a simplified model is proposed based on the refined truss model. Although the accuracy of the simplified model is slightly reduced (the COV is 0.071), it is still significantly higher than those of the design codes. Based on the simplified model, a standardized design method, which indirectly considers the beam deformation capacity, is provided for practical shear design.
机译:在本文中,提出了一种基于机械的分析桁架模型,以预测跨度到高度比率小于1.75的常规增强耦合梁的剪切强度和变形(称为短耦合光束)。该模型认为只有箍筋的份量,其负载路径由直接主支柱组成,该直接主支柱连接在光束的两端和次要支柱与搅拌器的两端连接压缩区域。通过满足支柱的交叉点的相容条件,确定主和次级支柱中的施加剪切载荷以及光束的剪切载荷横向位移关系的分配。将桁架模型的剪切强度预测与37个常规增强短耦合梁的测试结果进行了比较,这表明它可以准确地预测具有0.052的变异系数(COV)的剪切强度,而ACI 318提供的预测19和GB 50010-2010相对不准确(COV分别为0.19和0.21)。此外,通过桁架模型计算27个短耦合光束的骨架曲线,结果表明预测与测试结果良好。为了简化计算,基于精炼桁架模型提出了一种简化的模型。虽然简化模型的准确性略微减少(COV为0.071),但它仍然显着高于设计代码的精度。基于简化模型,为实用剪切设计提供了一种间接地考虑光束变形容量的标准化设计方法。

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