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Effect of loading direction on the shaft resistance of jacked piles in dense sand

机译:加载方向对稠密砂土中顶桩桩身阻力的影响

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The design of piles subjected to tensile loading is usually done by applying a correction factor on the shaft resistance calculated for compressive loading, but experimental data on what this correction factor should be are limited. This paper presents the results of a series of tensile-compressive (TC) and compressive-tensile (CT) static loading tests performed on instrumented model piles (with three different values of surface roughness) jacked into dense sand samples prepared in a half-cylindrical calibration chamber with digital image correlation (DIC) capability. Digital images of the model pile and sand were taken during loading of the pile in each test and processed using the DIC technique to obtain the soil displacement and strain fields. Results from local sensors showed that the ratio of the tensile-to-compressive shaft resistance of jacked piles is always less than one and depends on both the sequence of loading (CTor TC) and the pile surface roughness. The lower shaft resistance measured in tensile loading is due to the rotation of principal strains that occurs upon reversal of loading direction. Localisation of shear strains occurred within a thin band of sand around the pile shaft.
机译:承受拉力载荷的桩的设计通常是通过对为压载荷计算的竖井阻力施加校正因子来完成的,但有关该校正因子应限制的实验数据是有限的。本文介绍了一系列的拉伸-压缩(TC)和压缩-拉伸(CT)静态载荷测试的结果,这些测试是通过将测试的模型桩(具有三个不同的表面粗糙度值)顶入在半圆柱形中制备的致密砂岩样品中进行的具有数字图像相关(DIC)功能的校准室。在每次测试中,在桩的加载过程中获取模型桩和沙子的数字图像,并使用DIC技术进行处理以获得土壤位移和应变场。本地传感器的结果表明,千斤顶桩的拉伸/压缩轴阻力比始终小于1,并且取决于加载顺序(CTor TC)和桩表面粗糙度。在拉伸载荷下测得的较低的轴电阻是由于在载荷方向反转时发生的主应变旋转引起的。剪切应变的局域发生在桩身周围的细沙带中。

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