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Macro-Scale Direct Shear Test Device for Assessing Soil-Solid Interface Friction Under Low Effective Normal Stresses

机译:评估低有效法向应力下土-固界面摩擦的宏观直接剪切试验装置

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摘要

The paper describes a new macro-scale direct shear test device for assessing the largedisplacement soil/solid interface drained shear strength at low effective normal stresses. The testing method arises from a need to obtain the interface friction between soils and pipelines under low effective normal stress levels, which is an important consideration in the design of pipelines laid on the sea bed. The test device is fundamentally similar to the conventional small-scale direct shear box device except for its large footprint that provides a plan interface shear area of 3 m~2 (1.72 m by 1.75 m). The device is designed to impart displacement-controlled interface-shearing at displacement rates ranging from 0.0001 mm/s to 1 mm/s and with the ability to reach a maximum interface shear displacement of 1.2 m. The desired normal stress at the soil/solid interface is obtained using surcharge loads externally applied by means of bulk sand or water masses, or both in certain cases. The device is instrumented with transducers mounted flush with the top of the solid surface for the measurement of pore-water pressure at the shear interface. As a result, the device allows for accurate determination of the effective normal stress at the soil/solid interface during interface shear testing. The key features of this device are described, and the device capabilities are demonstrated using tests conducted on Fraser-River-sand/mild-steel, plastic-silt/epoxy-coated-mild-steel, non-plastic-silt/epoxy-coated-mild-steel, and kaolinite/ epoxy-coated-mild-steel interfaces at effective normal stresses between 3 and 7 kPa. The results can be also used as benchmarks to justify possible modifications of the currently available small-scale apparatus to reliably measure interface shear strength at such low effective normal stresses.
机译:本文介绍了一种新的宏观直接剪切试验装置,用于评估在低有效法向应力下大位移的土/固相界面排水抗剪强度。该测试方法源于在低有效法向应力水平下获得土壤与管道之间的界面摩擦的需要,这是铺设在海床上的管道设计中的重要考虑因素。该测试设备与传统的小型直接剪切箱设备基本相似,但其占地面积大,可提供3 m〜2(1.72 m x 1.75 m)的平面界面剪切面积。该设备设计用于以0.0001 mm / s至1 mm / s的位移速率进行位移控制的界面剪切,并具有达到1.2 m的最大界面剪切位移的能力。在土壤/固体界面处的期望法向应力是通过使用散装沙子或水团或在某些情况下同时使用这两种方法从外部施加的附加载荷获得的。该设备装有与固体表面齐平安装的传感器,用于测量剪切界面处的孔隙水压力。结果,该装置允许在界面剪切测试期间准确确定土壤/固体界面处的有效法向应力。描述了该设备的关键特性,并通过在Fraser-River砂/低碳钢,塑料粉砂/环氧树脂涂层的低碳钢,非塑料粉砂/环氧树脂涂层上进行的测试演示了该设备的功能-低碳钢和高岭土/环氧涂层低碳钢的界面,有效法向应力在3至7 kPa之间。该结果还可以用作基准,以证明对当前可用的小型设备进行可能的修改,以便在如此低的有效法向应力下可靠地测量界面剪切强度。

著录项

  • 来源
    《Geotechnical testing journal》 |2014年第1期|121-138|共18页
  • 作者单位

    Professor of Civil Engineering, Department of Civil Engineering, Univ. of British Columbia, 6250 Applied Science Lane, Vancouver, BC, V6T1Z4, Canada (Corresponding author);

    Department of Civil Engineering, Univ. of British Columbia, 6250 Applied Science Lane, Vancouver, BC, V6T1Z4, Canada;

    Professor of Civil Engineering, Department of Civil and Architectural Engineering, Qatar Univ., P.O. Box 2713, Doha, Qatar;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    interface friction; critical state friction angle; direct shear testing; coated pipes;

    机译:界面摩擦临界状态摩擦角直接剪切测试;涂层管;
  • 入库时间 2022-08-18 00:11:50

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