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Interactive strut-and-tie-model for shear strength prediction of RC pile caps

机译:交互式支撑杆系结模型预测钢筋混凝土桩帽的抗剪强度

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摘要

A new simple and practical strut-and-tie model (STM) for predicting the shear strength of RC pile caps is proposed in this paper. Two approaches are adopted to take into account the concrete softening effect. In the first approach, a concrete efficiency factor based on compression field theory is employed to determine the effective strength of a concrete strut, assumed to control the shear strength of the whole member. The second adopted Kupfer and Gerstle's biaxial failure criterion of concrete to derive the simple nominal shear strength of pile caps containing the interaction between strut and tie capacity. The validation of these two methods is investigated using 110 RC pile cap test results and other STMs available in the literature. It was found that the failure criterion approach appears to provide more accurate and consistent predictions, and hence is chosen to be the proposed STM. Finally, the predictions of the proposed STM are also compared with those obtained by using seven other STMs from codes of practice and the literature, and were found to give better accuracy and consistency.
机译:提出了一种新型的RC桩帽抗剪强度预测的简易实用拉杆模型。考虑到混凝土软化效果,采用了两种方法。在第一种方法中,假定基于控制整个构件的抗剪强度,采用基于压缩场理论的混凝土效率因子来确定混凝土支杆的有效强度。第二种方法采用了Kupfer和Gerstle的混凝土双轴破坏准则,以推导出包含支撑和拉力之间相互作用的桩帽的简单名义抗剪强度。使用110 RC桩帽测试结果和文献中提供的其他STM调查这两种方法的有效性。发现失效准则方法似乎提供了更准确和一致的预测,因此被选为拟议的STM。最后,还将拟议的STM的预测与使用其他七个STM从实践准则和文献中获得的预测进行了比较,发现它们具有更好的准确性和一致性。

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