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压力型预应力锚索受力分析
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(柳州欧维姆机械股份有限公司 545005)

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孙学毅

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TU378.1

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Stress analysis of pressure-type prestressed anchor cable
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(Liuzhou Overwem Machinery Co., LTD. 545005)

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    摘要:

    本文根据锚孔中锚固体与岩土体协调变形的情况,采用Kelvin问题位移解求得了压力型预应力锚索锚固体轴向应力σ和锚固体与孔壁间剪应力τ的近似分布规律。结果表明,岩体中σ、τ集中在受力点附近,应力传递长度仅几十公分;土体中σ、τ集中程度远远小于岩体,应力传递长度大于20m。本文提出在软土中采用钢梁替换水泥芯柱作为锚固体主体使压力型预应力锚索担心的两个控制应力σ与τ减少一个,只剩下剪应力τ。由于采用钢梁作为锚固体主体,使剪应力τ峰值大大降低,传力长度大大增加。文中指出,土体中采用压力分散结构意义不大,采用孔底扩孔会得到令人满意的效果。根据本文结果,岩体中压力型预应力锚索孔底处采用一段钢管替换水泥芯柱会使剪应力τ局部分散,在一定条件下可取代现有的压力分散型结构。

    Abstract:

    In this paper, the approximate distribution of axial stress σ and shear stress τ between anchor solid and hole wall are obtained by means of the Kelvin problem displacement solution according to the coordinated deformation of anchor solid and rock mass in anchor hole. The results show that σ and τ in rock mass are concentrated near the stress point and the stress transfer length is only tens of cm. The concentration of σ and τ in soil is much smaller than that of rock mass, and the stress transfer length is greater than 20m. In this paper, the steel beam is used to replace the cement core column as the anchor solid body in soft soil, so that the two controlling stresses σ and τ concerned by the pressure type prestressed anchor cable are reduced by one, and only the shear stress τ is left. Because the steel beam is used as the anchor solid body, the shear stress τ peak value is greatly reduced and the force transmission length is greatly increased. It is pointed out that the use of pressure dispersion structure in soil is of little significance, and the use of hole bottom reaming can get satisfactory results. According to the results of this paper, replacing the cement core column with a section of steel pipe at the bottom of the pressure-type prestressed anchor hole in rock mass can cause the shear stress τ to disperse locally, and can replace the existing pressure-type structure under certain conditions.

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Xueyi Sun, Xuan Liu, Chengzhou Liu, Yongsheng Wei Stress analysis of pressure-type prestressed anchor cable. Prestress Technology 2004,8(02):3-6. 10.59238/j. pt.2004.02.001

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  • 在线发布日期: 2023-08-09
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