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Constitutive modeling of static and cyclic behavior of interfaces and implementation in boundary value problems.

机译:接口的静态和循环行为的本构模型以及边值问题的实现。

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摘要

A constitutive model based on elasto-plasticity theory is proposed here to describe the behavior of interfaces subjected to static and cyclic loading conditions. The proposed model is developed in a hierarchical manner wherein a basic model describing simplified characteristics of the interfaces is modified by introducing different features, to model increasingly complex behavior of the interfaces. The proposed model can simulate associative, nonassociative, and strain-softening behavior during monotonic as well as cyclic loading. The parameters influencing interface behavior are identified using data from laboratory simple shear tests on sand-steel and sand-concrete interfaces. A parameter called "interface roughness ratio, R" is defined in order to model the interface behavior under different interface roughnesses. Similarly, a cyclic parameter Ω is introduced to simulate the cyclic volumetric behavior of the interfaces. Proposed model is verified with respect to comprehensive test data on interfaces with different roughnesses, normal loads, initial densities and type of sand, and quasi-static and cyclic loading. A new and highly efficient algorithm is developed to perform drift correction under constraint condition. This algorithm is used for the integration of constitutive relation for interfaces to perform back prediction. Performance of the algorithm is compared with various existing algorithms. Using Lyapunov's Stability Theorem, it is proved that the proposed algorithm is stable. The proposed model for the interfaces is used in the context of the thin-layer element approach and is implemented in a nonlinear dynamic finite element code to solve a boundary value problem involving dynamics of an axially loaded pile. It is shown here that the use of the interface model can allow proper modeling of shear transfer, volumetric behavior and localized relative slip in the interface zone. The effect on shear transfer from pile to soil due to the coupling between normal behavior and shear behavior of interface is established here for soil-structure interaction problems. The findings of this research have contributed to the understanding of the interface behavior in soil-structure interaction problems. The proposed model can simulate a number of important behavioral aspects of the interfaces.
机译:本文提出了一种基于弹塑性理论的本构模型,以描述界面在静态和循环载荷条件下的行为。以分层方式开发提出的模型,其中通过引入不同的特征来修改描述接口的简化特性的基本模型,以对接口的日益复杂的行为建模。所提出的模型可以模拟单调以及循环加载过程中的关联,非关联和应变软化行为。使用在砂钢和砂混凝土界面上进行的实验室简单剪切试验获得的数据,可以确定影响界面行为的参数。为了对不同界面粗糙度下的界面行为进行建模,定义了称为“界面粗糙度比R”的参数。类似地,引入循环参数Ω以模拟接口的循环体积行为。关于具有不同粗糙度,法向载荷,初始密度和砂子类型以及准静态和循环载荷的界面的综合测试数据,对所提出的模型进行了验证。开发了一种新的高效算法来在约束条件下执行漂移校正。该算法用于接口的本构关系的集成,以执行反向预测。将算法的性能与各种现有算法进行比较。利用李雅普诺夫的稳定性定理证明了该算法是稳定的。所提出的界面模型在薄层单元方法的上下文中使用,并以非线性动态有限元代码实现,以解决涉及轴向加载桩动力学的边值问题。此处显示,使用界面模型可以对界面区域中的剪切传递,体积行为和局部相对滑动进行适当的建模。针对土-结构相互作用问题,建立了由于界面的正常行为与剪切行为之间的耦合而导致的从桩到土的剪切传递的影响。这项研究的发现有助于理解土壤-结构相互作用问题中的界面行为。提出的模型可以模拟界面的许多重要行为方面。

著录项

  • 作者

    Navayogarajah Nadarajah.;

  • 作者单位
  • 年度 1990
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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