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A New Hollow Cylinder Torsional Shear Device for Stress/Strain Path Controlled Loading

机译:一种用于应力/应变路径控制载荷的新型空心圆柱扭转剪切装置

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An automated hollow cylinder torsional (HCT) shear device has been commissioned at Carleton University to enable research on stress rotation and partial drainage. The design incorporates elements to arrest undesirable runaway strains and enable the capture of post peak strain softening in different directions, and the ability to closely follow prescribed loading paths. This device is capable of applying both static and cyclic loading under stress and displacement controlled loading modes. This is one of the first HCT devices built specifically to study the partially drained response of soils under three dimensional loading. Test results demonstrating various capabilities of this device, and the level of confidence in the measurements are presented in this paper. The presented results highlight the importance of drainage boundary conditions, and principal stress rotation on liquefaction susceptibility. The partial drainage condition in soils reveals that a small expansive volumetric deformation due to unfavorable drainage boundary conditions can trigger strain softening and flow in soils that may be stable and strain hardening under undrained loading. Tests along different total stress paths under three-dimensional generalized loading show that the uniqueness of undrained effective stress path can be extended to generalized three dimensional loading.
机译:卡尔顿大学已委托自动中空圆柱体扭转(HCT)剪切装置进行应力旋转和局部排水的研究。该设计结合了一些元件,以阻止不希望的失控应变,并能够捕获峰值后应变在不同方向上的软化,并能够紧密遵循规定的加载路径。该设备能够在应力和位移控制的加载模式下施加静态和循环加载。这是专门为研究三维载荷下土壤的部分排水响应而建造的首批HCT设备之一。本文介绍了证明该设备各种功能的测试结果,以及对测量结果的信心水平。提出的结果突出了排水边界条件和主应力旋转对液化敏感性的重要性。土壤的部分排水条件表明,由于不利的排水边界条件而引起的小体积膨胀变形会触发应变软化和土壤中的流动,这些土可能是稳定的,并且在不排水的情况下会变硬。三维广义载荷下沿不同总应力路径的试验表明,不排水有效应力路径的唯一性可以扩展到广义三维载荷。

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