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The undrained shear strength anisotropy of four Jurassic to Eocene stiff clays

机译:四种侏罗纪至始新世硬粘土的不排水抗剪强度各向异性

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摘要

The shear strength of heavily overconsolidated, stiff-to-hard plastic clays is crucial to their stability and also influential on the ground movements they develop in many geotechnical engineering applications. This paper considers the shear strength anisotropy of the London, Gault, Kimmeridge and Oxford clays through advanced hollow cylinder experiments on multiple high-quality samples taken at similar depths from inland sites where the geotechnical profiles have been established by comprehensive laboratory and in situ testing. Suites of undrained tests are reported, which loaded specimens from their in situ stress states to reach ultimate failure at pre-defined final major principal stress axis orientations defined in the vertical plane, while also controlling or monitoring the intermediate principal stress ratio, b. Both stress path and simple shear tests were undertaken with the hollow cylinder apparatus, which offers key advantages over conventional simple shear equipment. The interpretation reveals patterns of marked shear strength anisotropy that impact significantly on numerous geotechnical engineering applications.
机译:严重超固结,从硬到硬的塑料黏土的抗剪强度对其稳定性至关重要,同时也影响着它们在许多岩土工程应用中开发的地面运动。本文通过先进的空心圆柱体实验对伦敦,高特,金梅里奇和牛津粘土的抗剪强度各向异性进行了研究,这些实验是从多个内陆地点以相似深度采集的高质量样本进行的,这些内陆地点通过综合实验室和现场测试建立了岩土剖面。据报道,进行了不排水的测试,从原位应力状态加载样本,以在垂直平面中定义的预定义的最终主要主应力轴方向达到极限破坏,同时还控制或监视中间主应力比b。用中空圆筒设备进行了应力路径和简单剪切测试,与传统的简单剪切设备相比,它具有关键优势。该解释揭示了显着的剪切强度各向异性的模式,这些模式显着影响了许多岩土工程应用。

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