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The structural effect of bolted splices on retrofitted transmission tower angle members

机译:螺栓连接对改造输电塔角构件的结构影响

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This paper examines the structural behavior of compound members used for transmission tower legs, constructed from steel angles that have been retrofitted by attaching additional parallel angle members. To study the load transfer mechanism between the original member and the reinforcing component as well as the influence of splice joints in the original tower structures, a group of static experimental tests have been conducted. A 3D nonlinear finite element model was developed in ABAQ.US after considering the clearance between bolts and holes and the contact interaction between bolts and member surfaces in all of the connections. The detailed 3D model was then simplified to a one dimensional model through the use of spring elements to simulate connectors and splices, and beam elements to represent original and reinforcing members. Numerical results based on the simplified model agreed well with those from the 3D model and experimental tests. A parametric study showed that the stiffness change and bolt-slip phenomenon in the splicing joint and the connectors play an important role in the structural behavior of the retrofitted system. Enhancement of the load-carrying capability and load-sharing rate for reinforcing members can be achieved by optimizing the connector joint parameters.
机译:本文研究了用于输电塔腿的复合构件的结构性能,该复合构件由钢制角钢构成,这些钢制角钢通过附加其他平行角钢构件进行了改造。为了研究原始构件与钢筋构件之间的载荷传递机制以及拼接接头对原始塔架结构的影响,进行了一组静态实验测试。考虑了螺栓和孔之间的间隙以及所有连接中螺栓与构件表面之间的接触相互作用,在ABAQ.US中建立了3D非线性有限元模型。然后,通过使用弹簧元件模拟连接器和接头,以及使用梁元件表示原始构件和加固构件,将详细的3D模型简化为一维模型。基于简化模型的数值结果与3D模型和实验测试的数值结果非常吻合。参数研究表明,拼接接头和连接器的刚度变化和螺栓滑移现象在改型系统的结构行为中起着重要作用。通过优化连接器接头参数,可以增强增强构件的承载能力和负载共享率。

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