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Testing and Modeling of Saturated Interfaces with Effect of Surface Roughness. Ⅰ: Test Behavior

机译:具有表面粗糙度影响的饱和界面的测试和建模。 Ⅰ:测试行为

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The response of structure-foundation systems subjected to static, cyclic, or dynamic load depends on the interaction between them. The behavior of such systems is strongly nonlinear and inelastic and is affected by factors such as the interface behavior, e.g., relative motions, pore water pressure, and surface roughness. This two-part paper presents new and unique constitutive modeling, testing, and validations for interface behavior affected by factors such as surface roughness, confining pressure, amplitude, and frequency of cyclic loading. The aim of this work is to gain an improved understanding of the mechanical behavior of saturated interfaces between structural and geologic materials subjected to cyclic loading with emphasis on the effect of surface roughness of structural material; this is important for safety and to improve analysis and design of geotechnical structures. Monotonic and cyclic simple shear experiments are conducted on Ottawa sand-steel interfaces under undrained conditions using the cyclic multidegree-of-freedom shear device (CYMDOF-P) with pore water pressure measurements. The effect of various parameters such as normal stress, surface roughness of steel, type of loading, and the amplitude and frequency of the applied displacement in cyclic loading are investigated in Part I. The constitutive modeling for the interfaces are presented in Part II.
机译:结构基础系统承受静态,循环或动态载荷的响应取决于它们之间的相互作用。这种系统的行为是强烈的非线性和非弹性的,并且受诸如界面行为的因素的影响,例如相对运动,孔隙水压力和表面粗糙度。这份由两部分组成的论文介绍了受表面粗糙度,围压,振幅和循环加载频率等因素影响的界面行为的新颖且独特的本构模型,测试和验证。这项工作的目的是为了更好地理解承受循环载荷的结构和地质材料之间饱和界面的机械性能,重点是结构材料的表面粗糙度的影响。这对于安全以及改善岩土结构的分析和设计非常重要。使用循环多自由度剪切装置(CYMDOF-P)在孔隙水压力测量的条件下,在不排水条件下对渥太华砂钢界面进行单调和循环简单剪切实验。第一部分研究了法向应力,钢的表面粗糙度,载荷类型以及循环载荷中施加的位移的幅度和频率等各种参数的影响。第二部分介绍了界面的本构模型。

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