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MODELLING OF NORMAL AND SHEAR BEHAVIOR OF INTERFACE IN DYNAMIC SOIL-STRUCTURE INTERACTION.

机译:动态土-结构相互作用中界面的正常和剪切行为建模。

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摘要

The interface normal behavior between Ottawa sand and concrete for static and cyclic loading has been studied using Cyclic Multi Degree-of-Freedom test device. The static force controlled test for the interface showed exponential relation between normal stress and strain during initial loading, hyperbolic relation during unloading and linear relation during reloading. A series of cyclic force controlled interface tests are described for normal behavior and the interface behavior is found to be a function of the applied initial normal stress, the amplitude of the stress and the number of loading cycles. The reloading modulus is shown to increase with number of loading cycle. Also, a series of combined normal (force controlled) and shear (displacement controlled) tests are described in which the shear stress for given amplitude of shear displacement is found to increase as normal stress and number of loading cycles increases. The results of the laboratory tests for normal behavior are used to determine the parameters to describe the interface stress-strain response. The model is shown to describe the hysteresis behavior of the interface as a function of amplitude of normal stress and number of loading cycles. The model is used to predict the results of cyclic normal tests and combined normal and shear tests, and was found to yield satisfactory results. The interface model is implemented in a 2D nonlinear soil-structure interaction finite element procedure. The finite element procedure is verified with respect to simple problems for which close form solution or laboratory results are available. The response of the force controlled cyclic test and combined normal and shear test is then predicted using the FE procedure and reasonable results are obtained. A pier foundation subjected to base displacement is then analysed for different combinations of soil and interface behavior. Computer results are qualitatively compared with displacement and contact stresses and the effect of including the interface behavior is identified with respect to debonding and rebonding of the interface. The results of this research have provided understanding of the cyclic behavior of sand-concrete interface subjected to normal and combined normal and shear loading. The interface behavior has been represented by simple mathematical model for which parameters can be easily determined from static and cyclic tests. The model is also defined for general loading to incorporate debonding and rebonding and it is easy to implement into a FE procedure.
机译:使用循环多自由度测试装置研究了渥太华砂土和混凝土在静载荷和循环载荷下的界面正常行为。界面的静态力控制测试显示了初始加载过程中法向应力与应变之间的指数关系,卸载过程中的双曲线关系以及重新加载过程中的线性关系。描述了针对正常行为的一系列循环力控制的界面测试,发现界面行为是所施加的初始法向应力,应力幅度和加载循环次数的函数。显示出重载模量随装载循环次数的增加而增加。此外,还描述了一系列组合的法向(力控制)和剪力(位移控制)测试,其中发现给定剪切位移幅度的剪应力随法向应力和载荷循环次数的增加而增加。正常行为的实验室测试结果用于确定描述界面应力-应变响应的参数。显示了该模型以描述界面的滞后行为,该滞后行为是法向应力振幅和加载周期数的函数。该模型用于预测循环法向测试以及法向和剪切组合测试的结果,并得出令人满意的结果。界面模型是在二维非线性土-结构相互作用有限元程序中实现的。关于简单问题的有限元程序进行了验证,对于这些简单问题,可以使用近似形式的解决方案或实验室结果。然后使用有限元程序预测受力控制的循环试验以及组合的正常试验和剪切试验的响应,并获得合理的结果。然后分析受基础位移影响的墩基础的土和界面行为的不同组合。定性地将计算机结果与位移和接触应力进行比较,并就界面的脱粘和重新粘合确定了包括界面行为的影响。这项研究的结果提供了对砂土-混凝土界面在法向和组合法向和剪切荷载作用下的循环行为的理解。接口行为已由简单的数学模型表示,可以通过静态和循环测试轻松确定其参数。该模型还针对一般载荷进行了定义,以包含脱胶和重新胶合,并且很容易在有限元程序中实施。

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