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首页> 外文期刊>Canadian Geotechnical Journal >Three-dimensional monotonic and cyclic behavior of a gravel-steel interface from large-scale simple-shear tests
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Three-dimensional monotonic and cyclic behavior of a gravel-steel interface from large-scale simple-shear tests

机译:大规模简单剪切试验的碎石钢界面的三维单调和循环行为

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Gravel-structure interfaces are involved in many large-scale geotechnical applications and play a vital role in the performance of soil-structure interaction systems. A large-scale simple-shear device was professionally developed and used to investigate three-dimensional (3-D) monotonic and cyclic shear behavior of a gravel-steel interface in two-way beeline, cross, and circular shear paths. The soil deformation was measured and was used to determine the interface thickness. The deforming and sliding displacements of the interface were quantified and separated from the total tangential displacement. Results show that the interface thickness is about 6-7 times the mean grain size, D-50, independent of the normal stress and shear path. Under 3-D loading conditions, the shear stress vs. tangential displacement hysteretic response exhibits notably 3-D features. The interface becomes stiffer because of the hardening behavior of the gravel during cyclic shearing. The total normal displacement can be divided into irreversible and reversible components, which present different responses. The peak shear strength is mobilized when the interface dilatancy rate reaches the maximum at a sliding displacement of about 0.5D(50), and behaves in an anisotropic manner caused by the shear orientation effect. The normal stress and shear paths have significant influences on the 3-D interface behavior.
机译:砾石结构界面涉及许多大型岩土应用,并在土壤结构相互作用系统的性能方面发挥重要作用。专业开发了一种大型简单剪切装置,用于研究双向等管,交叉和圆形剪切路径的碎石钢界面的三维(3-D)单调和循环剪切行为。测量土壤变形并用于确定界面厚度。界面的变形和滑动位移量化并与总切向位移分离。结果表明,界面厚度约为平均粒度,D-50,与正常应力和剪切路径无关。在3-D负载条件下,剪切应力与切向位移滞后响应表现出显着的3-D特征。由于在循环剪切期间砾石的硬化行为,界面变得更硬。总正常位移可分为不可逆和可逆的组件,其呈现不同的反应。当界面稀释率达到约0.5d(50)的滑动位移时达到最大值时,动员峰值剪切强度,并且以由剪切取向效果引起的各向异性的方式行事。正常应力和剪切路径对3-D接口行为具有显着影响。

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