Load Transferring Characteristics of Expanded Pile with Cement Mortar Mixture for Pipe Pile

Shijie Hou, Benlin Ying, Yonghao Zhang
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Abstract

Two kinds of interface shear force transmission models of expanded pile are introduced in combination with FRIC subroutine. ABAQUS is used to carry out numerical analysis to study the load transfer characteristics of expanded pile under vertical load. The results show: the load on the top of the pile is transmitted by the strong cohesive force between the pipe pile and the expanded interface. Under the vertical load, the axial stress of the pipe pile in the expanded pile gradually decreases with the increase of depth, and the axial stress of the expanded part increases first and then decreases with the depth. With the increase of pile length, pipe pile diameter or expansion thickness, the axial stress of pipe pile increases as a whole. With the increase of pile length, the axial stress of the expansion body increases gradually, and with the increase of pile diameter or expansion thickness, the axial stress of the expansion body decreases gradually. The axial stress of the pipe pile in the equal core part of the non-equal core expanded pile gradually decreases with the increase of depth, and the axial stress of the expanded body increases with the increase of the pile length.
管桩用水泥砂浆混合物膨胀桩的荷载传递特性
结合 FRIC 子程序,介绍了两种膨胀桩界面剪力传递模型。利用 ABAQUS 进行数值分析,研究竖向荷载作用下膨胀桩的荷载传递特性。结果表明:桩顶荷载由管桩与膨胀界面之间的强大内聚力传递。在竖向荷载作用下,扩孔桩内管桩的轴向应力随深度的增加而逐渐减小,扩孔部分的轴向应力随深度的增加先增大后减小。随着桩长、管桩直径或膨胀厚度的增加,管桩的轴向应力整体增大。随着桩长的增加,膨胀体的轴向应力逐渐增大,随着桩径或膨胀厚度的增加,膨胀体的轴向应力逐渐减小。非等芯膨胀管桩等芯部分的管桩轴向应力随深度的增加而逐渐减小,膨胀体的轴向应力随桩长的增加而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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