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首页> 外文期刊>International journal of geomechanics >Analytical Model for Predicting Stress Distribution and Load Transfer of Tension-Type Anchor Cable with Borehole Deviation
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Analytical Model for Predicting Stress Distribution and Load Transfer of Tension-Type Anchor Cable with Borehole Deviation

机译:钻孔偏离预测应力分布应力分布和负荷转移的分析模型

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摘要

Borehole deviation is a common problem in anchor cable engineering of soil and rock, especially in long drilling holes, which affects the reinforcement effect of tension-type anchor cables, but the law of stress distribution and load transfer of anchorage section with borehole deviation is still not systematic or comprehensive. The research presented in this paper established an analytical model to determine the axial force and shear stress distribution and load transfer of linear and bending anchorage sections by using elastic mechanical analysis. A comparison of axial force and shear stress distribution and load transfer mechanic behavior of linear and bending anchorage sections was made, and the effects of tensile loading, anchorage segment lengths, bending radius and borehole diameters were calculated and analyzed. In addition, an indoor model test was carried out to validate the theoretical calculated results. The results from the theoretical analytical model and the indoor model test had good consistency, which indicated that: (i) the decay speed of axial force and shear stress on the bending anchorage sections was slower than on the linear ones, so a longer anchorage section length (about 23%) was needed when borehole deviation occurred in soil and rock engineering; (ii) the tensile loading, anchorage segment lengths, bending radius, and borehole diameters affected the axial force and shear stress values, reasonable stress distributions, the inner- and outer- surfaces ratios or all of these mechanic behaviors. The deduced analytical model can be used to calculate and predict the mechanic behavior of stress distribution and load transfer of linear and bending anchorage sections in anchor cable engineering.
机译:钻孔偏差是土壤和岩石锚缆线工程中的常见问题,特别是在长钻孔中,影响张力型锚固电缆的加固效果,但仍然存在钻孔偏离锚固截面的应力分布和锚固截面的载荷传递。仍然存在没有系统或全面。本文提出的研究建立了一种分析模型,通过使用弹性力学分析确定线性和剪切应力分布和线性和弯曲锚固部分的负载转移。制作了轴向力和剪切应力分布的比较和弯曲锚固部分的载荷转移力学行为,并计算并分析了拉伸载荷,锚固段长度,弯曲半径和钻孔直径的影响。此外,进行了室内模型测试以验证理论计算结果。理论分析模型的结果和室内模型测试具有良好的一致性,这表明:(i)弯曲锚固部分上的轴向力和剪切应力的衰减速度比线性换档较慢,因此更长的锚固部分在土壤和岩石工程中发生钻孔偏差时需要长度(约23%); (ii)拉伸负载,锚固段长度,弯曲半径和钻孔直径影响轴向力和剪切应力值,合理的应力分布,内表面和外表面比或所有这些机械行为。推导的分析模型可用于计算和预测锚线缆工程中线性和弯曲锚固部分的应力分布和负载传递的机械行为。

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  • 来源
    《International journal of geomechanics》 |2020年第7期|04020085.1-04020085.13|共13页
  • 作者

    Baolong Zhu; Qi Li; Yi Wu; Jing Li;

  • 作者单位

    School of Civil Engineering and Architecture Southwest Univ. of Science and Technology Mianyang 621010 China Shock and Vibration of Engineering Materials and Structures Key Laboratory of Sichuan Province Southwest Univ. of Science and Technology Mianyang 621010 China;

    School of Civil Engineering and Architecture Southwest Univ. of Science and Technology Mianyang 621010 China;

    Dept. of Civil Engineering Guangdong Polytechnic of Water Resources and Electric Engineering Guangzhou 510925 China;

    School of Civil Engineering and Architecture Southwest Univ. of Science and Technology Mianyang 621010 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tension-type anchor; Borehole deviation; Stress distribution; Load transfer; Elastic mechanical analysis;

    机译:张力型锚;钻孔偏差;压力分布;负载转移;弹性力学分析;

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