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压力分散型预应力锚杆的力学机理研究

贾金青, 涂兵雄, 王海涛, 孟刚, 姚大立

贾金青, 涂兵雄, 王海涛, 孟刚, 姚大立. 压力分散型预应力锚杆的力学机理研究[J]. 岩土工程学报, 2011, 33(9): 1320-1325.
引用本文: 贾金青, 涂兵雄, 王海涛, 孟刚, 姚大立. 压力分散型预应力锚杆的力学机理研究[J]. 岩土工程学报, 2011, 33(9): 1320-1325.
JIA Jin-qing, TU Bing-xiong, WANG Hai-tao, MENG Gang, YAO Da-li. Mechanical behaviors of pressure-dispersive prestressed anchor[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(9): 1320-1325.
Citation: JIA Jin-qing, TU Bing-xiong, WANG Hai-tao, MENG Gang, YAO Da-li. Mechanical behaviors of pressure-dispersive prestressed anchor[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(9): 1320-1325.

压力分散型预应力锚杆的力学机理研究  English Version

详细信息
    作者简介:

    贾金青 (1962 – ) ,男,河北沧州人,博士,教授,主要从事岩土工程和结构工程方面的研究工作。

  • 中图分类号: U455.71

Mechanical behaviors of pressure-dispersive prestressed anchor

  • 摘要: 通过对压力分散型预应力锚杆锚固段的受力分析,推导出了该类型锚杆的剪应力和轴力分布的解析解。在此基础上,对比了压力分散型锚杆与压力集中型锚杆的受力性能,结果表明,压力分散型锚杆的剪应力和轴力都大幅下降,避免了应力集中。讨论了岩土体的力学参数和预应力对剪应力和轴力的影响,结果表明,岩土体弹性模量和内摩擦角越大,则剪应力峰值越高,轴力衰减越快,且剪应力和轴力分布越集中;预应力越大,则剪应力和轴力越大;黏聚力越大,则剪应力有所增大而轴力有所减小,但影响不大。
    Abstract: Through the mechanical analysis of the anchorage segment of the pressure-dispersive prestressed anchor, the analytic solutions for the distribution of the shear stress and the axial force in the anchor are derived. Based on the developed analytical solutions, the stressed properties of the pressure-dispersive prestressed anchor and the pressure-concentrative prestressed anchor are compared. The results show that the shear stress and axial force of the pressure-dispersive prestressed anchor greatly decrease, and the phenomenon of stress-concentration is avoided. The influences of the mechanical characteristics of the rock mass and the prestress on the shear stress and axial force are discussed. It is shown that the greater the elastic modulus and internal friction angle of rock mass, the greater the maximum of shear stress and the faster the decrease of axial force; the greater the prestress, the greater the shear stress and axial force; and the greater the cohesion, the greater the shear stress and the smaller the axial force, but there is little effect.
  • [1] 贾金青 , 郑卫锋 . 预应力锚杆柔性支护法的研究与应用 [J]. 岩土工程学报 , 2005, 11 (27): 1257 – 1261. (JIA Jin-qing, ZHENG Wei-feng. Study and application of flexible retaining method with prestressed anchor[J]. Chinese Journal of Geotechnical Engineering, 2005, 11 (27): 1257 – 1261. (in Chinese))
    [2] 张发明 , 刘汉龙 , 赵维炳 . 预应力锚索加固岩质边坡的设计实例 [J]. 岩土力学 , 2000, 21 (2): 177 – 179. (ZHANG Fa-ming, LIU Han-long, ZHAO Wei-bing. Design practice of reinforcing rock slope with prestressed cables[J].Rock and Soil Mechanics, 2000, 21 (2): 177 – 179. (in Chinese))
    [3] 贾金青 , 宋二祥 . 滨海大型地下工程抗浮锚杆的设计与试验研究 [J]. 岩土工程学报 , 2002, 24 (6): 699 – 771. (JIA Jin-qing, SONG Er-xiang. The design and test on anti-floating anchorage of large substructure in coastal region[J]. Chinese Journal of Geotechnical Engineering, 2002, 24 (6): 699 – 771. (in Chinese))
    [4] 陈国周 , 贾金青 . 锚杆与土体界面渐进破坏的解析解 [J]. 岩石力学 , 2007, 28 ( 增刊 ): 321 – 326. (CHEN Guo-zhou, JIA Jin-qing. Analytical solution for progressive failure of interface between anchor and soil[J]. Rock and Soil Mechanics, 2007, 28 (S0): 321 – 326. (in Chinese))
    [5] 尤春安 . 压力型锚索锚固段的受力分析 [J]. 岩土工程学报 , 2004, 26 (6): 828 – 831. (YOU Chun-an. Mechanical analysis on anchorage segment of pressure-type cable[J]. Chinese Journal of Geotechnical Engineering, 2004, 26 (6): 828 – 831. (in Chinese))
    [6] 高永涛 , 吴顺川 , 孙金海 . 预应力锚杆锚固段应力分布规律及应用 [J]. 北京科技大学学报 , 2002, 24 (4): 387 – 390. (GAO Yong-tao, WU Shun-chuan, SHUN Jin-hai. Application of the pre-stress bolt stress distribution principle[J]. Journal of University of Science and Technology Beijing, 2002, 24 (4): 387 – 390. (in Chinese))
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    [9] 张 洁 , 尚岳全 , 叶 彬 . 锚杆临界锚固长度解析计算 [J]. 岩石力学与工程学报 , 2005, 24 (7): 1134 – 1138. (ZHANG Jie, SHANG Yue-quan, YE Bin. Analytical calculations of critical anchorage length of bolts[J]. Chinese Journal of Rock Mechanics and Engineering, 2005, 24 (7): 1134 – 1138. (in Chinese))
    [10] EVANGELISTA A, SAPIO G. Behaviour of ground anchors in stiff clays[C]// Proceedings of the 9th International Conference on Soil Mechanics and Foundation Engineering. Tokyo: The Japanese Society of Soil Mechanics and Foundation Engineering, 1977: 39 – 47.
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  • 发布日期:  2011-09-14

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