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Variation Analysis of Uplift Bearing Characteristics of Strip Anchor Plate in Nonhomogeneous Materials

机译:非均匀材料带锚板隆起轴承特性的变化分析

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摘要

Considering the nonlinearity and heterogeneity of geotechnical materials, the ultimate pullout capacity of a shallow horizontal strip anchor plate is determined based on the upper-bound limit analysis theory and the nonlinear Mohr-Coulomb failure criterion. The ultimate pullout capacity and the soil rupture surface, as well as its stress distribution, are obtained by Euler equations and the Runge-Kutta process. The effectiveness of the variation method is verified by comparisons with existing results and numerical results. Furthermore, the effects of variation coefficients of geotechnical parameters and buried depth on the ultimate pullout capacity are analyzed. Results indicate that (1) the ultimate pullout capacity increases with the variation coefficients of the shear strength parameters, and opposite parameters result in symmetrical failure patterns. (2) The normal stress on the rupture surface is only related to the unit weight and depth. The proposed variation method provides a reliable and rigorous upper-bound solution of the pullout capacity of strip anchor plates embedded in nonhomogeneous materials, and it would provide a useful reference for the engineering design of anchor plates.
机译:考虑到岩土材料的非线性和异质性,基于上限限制分析理论和非线性Mohr-Coulomb失效标准来确定浅水平带锚板的最终拉伸容量。通过欧拉方程和跳闸-Kutta工艺获得最终的拉伸容量和土壤破裂表面以及其应力分布。通过与现有结果和数值结果的比较来验证变形方法的有效性。此外,分析了岩土地参数的变化系数和掩埋深度对最终拉出容量的影响。结果表明(1)(1)抗剪切强度参数的变化系数增加,并且相反的参数导致对称失效模式。 (2)破裂表面上的正常应力仅与单位重量和深度有关。所提出的变化方法提供了嵌入非均匀材料的带状锚板的拉出容量的可靠和严格的上限解,并且它将为锚固板的工程设计提供一种有用的参考。

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