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Research on method of non-linear static pushover analysis and influential mechanism of displacement ductility of single pile

机译:单桩非线性静态推进分析方法及影响单桩位移延展性的影响力研究

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In this article, the distribution of plastic hinge model is adopted to simulate the elastic and plastic of pile body, p-y curve is used to simulate resistance of pile foundation soil. We do static non-linear pushover analysis of the single pile of pile foundations, and research the influence of the axial compressive ratio η of pile shaft, longitudinal reinforcement rate ρ of section, stirrup ratio μof section and shear strength C of foundation soil to the system-interaction of pile and soil. The result shows that axial compressive ratio of pile shaft has a significant influence on horizontal limit bearing capacity and the displacement ductility of the system. With the increase of the axial compressive ratio, system of the displacement ductility reduces gradually, but the limit bearing capacity increases gradually. Under a horizontal load, the order and the mechanism of plastic hinge are obviously different because of different axial compressive ratio of pile shaft, This analysis method may further provide a reference for nonlinear seismic analysis of pile bents.
机译:在本文中,采用塑料铰链模型的分布来模拟桩体的弹性和塑料,P-Y曲线用于模拟桩基土的电阻。我们做了单桩桩基的静态非线性推送分析,研究了桩轴,纵向加强率ρ的轴向压缩比η的影响,骨架μOF部分和基础土的剪切强度C对桩和土壤的系统相互作用。结果表明,桩轴的轴向压缩比对系统的水平极限承载力和位移延性具有显着影响。随着轴向压缩比的增加,位移延展性的系统逐渐减少,但极限承载能力逐渐增加。在水平载荷下,塑料铰链的顺序和机构由于桩轴的轴向压缩比不同,该分析方法可以进一步为桩箱的非线性地震分析提供参考。

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