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Behaviour of Frictional Joints in Steel Arch Yielding Supports

机译:钢拱屈服支架中的摩擦缝行为

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The loading capacity and ability of steel arch supports to accept deformations from the surrounding rock mass is influenced significantly by the function of the connections and in particular, the tightening of the bolts. This contribution deals with computer modelling of the yielding bolt connections for different torques to determine the load-bearing capacity of the connections. Another parameter that affects the loading capacity significantly is the value of the friction coefficient of the contacts between the elements of the joints. The authors investigated both the behaviour and conditions of the individual parts for three values of tightening moment and the relation between the value of screw tightening and load-bearing capacity of the connections for different friction coefficients. ANSYS software and the finite element method were used for the computer modelling. The solution is nonlinear because of the bi-linear material properties of steel and the large deformations. The geometry of the computer model was created from designs of all four parts of the structure. The calculation also defines the weakest part of the joint’s structure based on stress analysis. The load was divided into two loading steps: the pre-tensioning of connecting bolts and the deformation loading corresponding to 50-mm slip of one support. The full Newton-Raphson method was chosen for the solution. The calculations were carried out on a computer at the Supercomputing Centre VSB-Technical University of Ostrava.
机译:连接的功能,尤其是螺栓的拧紧,会严重影响钢拱形支座承受周围岩体变形的承载能力和能力。该贡献涉及用于不同扭矩的屈服螺栓连接的计算机建模,以确定连接的承载能力。显着影响负载能力的另一个参数是关节元件之间的触点的摩擦系数值。作者研究了三个紧固力矩值的各个零件的性能和状况,以及不同摩擦系数的螺钉紧固值与连接件的承载能力之间的关系。 ANSYS软件和有限元方法用于计算机建模。由于钢的双线性材料特性和大变形,该解决方案是非线性的。计算机模型的几何是根据结构的所有四个部分的设计创建的。该计算还基于应力分析定义了关节结构的最薄弱部分。载荷分为两个载荷步骤:连接螺栓的预紧和对应于一个支架50毫米滑移的变形载荷。选择完整的牛顿-拉夫森方法进行求解。该计算是在俄斯特拉发VSB技术大学超级计算中心的计算机上进行的。

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