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Pile Side Resistance in Sands for the Unloading Effect and Modulus Degradation

机译:砂土桩侧阻力对卸荷效应和模量退化的影响

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A total of 36 groups of sand-concrete interface loading and unloading direct shear tests were used to analyze the mechanical properties of the pile side-soil interface. The test results show that the interface residual shear stress for the same applied normal stress tends to be constant for the rough sand-concrete interface. The initial shear modulus and peak shear stress of the interface both decrease with the degree of unloading and increase with the interface roughness. The maximum amount of interface shear dilatancy increases with the degree of unloading, and the maximum amount of interface shear shrinkage decreases with unloading for the same interface roughness. A pile side resistance-displacement model is established using the shear displacement method. The proposed function considers both the radial unloading effect and modulus degradation of soil around the pile. The effect of radial unloading and interface roughness on the degradation of the equivalent shear modulus is analyzed using a single fitting parameter b . Good agreement of the proposed model is confirmed by applying the direct shear tests of the 36 groups.
机译:总共进行了36组砂土-混凝土界面加载和卸载直接剪切试验,以分析桩侧-土界面的力学性能。试验结果表明,在相同的施加法向应力下,粗糙的砂-混凝土界面的界面残余剪应力趋于恒定。界面的初始剪切模量和峰值剪切应力都随着卸载程度的减小而减小,并且随着界面粗糙度的增大而增大。对于相同的界面粗糙度,界面剪切扩容的最大量随卸载程度的增加而增加,而界面剪切收缩的最大量随卸载的程度而减小。采用剪切位移法建立了桩侧阻力位移模型。拟议的功能同时考虑了径向卸载效应和桩周围土壤的模量退化。使用单个拟合参数b分析径向卸载和界面粗糙度对等效剪切模量降低的影响。通过对36组进行直接剪切试验,证实了所提出模型的良好一致性。

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