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Model tests on bearing capacity and accumulated settlement of a single pile in simulated soft rock under axial cyclic loading

机译:轴向循环荷载下模拟软岩中单桩承载力和累积沉降的模型试验

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The research reported herein is concerned with the model testing of piles socketed in soft rock which was simulated by cement, plaster, sand, water and concrete hardening accelerator. Model tests on a single pile socketed in simulated soft rock under axial cyclic loading were conducted and the bearing capacity and accumulated deformation characteristics under different static, and cyclic loads were studied by using a device which combined oneself-designed test apparatus with a dynamic triaxial system. The accumulated deformation of the pile head, and the axial force, were measured by LVDT and strain gauges, respectively. Test results show that the static load ratio (SLR), cyclic load ratio (CLR), and the number of cycles affect the accumulated deformation, cyclic secant modulus of pile head, and ultimate bearing capacity. The accumulated deformation increases with increasing numbers of cycles, however, its rate of growth decreases and is asymptotic to zero. The cyclic secant modulus of pile head increases and then decreases with the growth in the number of cycles, and finally remains stable after 50 cycles. The ultimate bearing capacity of the pile is increased by about 30% because of the cyclic loading thereon, and the axial force is changed due to the applied cyclic shear stress. According to the test results, the development of accumulated settlement is analysed. Finally, an empirical formula for accumulated settlement, considering the effects of the number of cycles, the static load ratio, the cyclic load ratio and the uniaxial compressive strength, is proposed which can be used for feasibility studies or preliminary design of pile foundations on soft rock subjected to cyclic loading.
机译:本文报道的研究涉及用水泥,石膏,沙子,水和混凝土硬化促进剂模拟的软岩中的承插桩的模型测试。在轴向周期性荷载下对模拟软岩中的单桩桩进行了模型试验,并采用结合了自行设计的试验装置和动态三轴系统的装置研究了在不同静力下的承载力和累积变形特性。 。桩头的累积变形和轴向力分别通过LVDT和应变仪测量。测试结果表明,静载荷比(SLR),循环载荷比(CLR)和循环次数会影响桩头的累积变形,循环正割模量和极限承载力。累积的变形随着循环次数的增加而增加,但是,其增长率降低并且渐近为零。桩头的循环正割模量随循环次数的增加而增加,然后减小,最终在50个循环后保持稳定。由于桩上的循环载荷,桩的极限承载力增加了约30%,并且由于施加的循环剪应力而改变了轴向力。根据测试结果,分析了累积沉降的发展。最后,考虑周转次数,静载荷比,循环载荷比和单轴抗压强度的影响,提出了累积沉降的经验公式,可用于软土地基上桩基础的可行性研究或初步设计。岩石承受周期性载荷。

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