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Balance Fatigue Design of Cast Steel Nodes in Tubular Steel Structures

机译:管状钢结构中铸钢节点的平衡疲劳设计

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摘要

Cast steel nodes are being increasingly popular in steel structure joint application as their advanced mechanical performances and flexible forms. This kind of joints improves the structural antifatigue capability observably and is expected to be widely used in the structures with fatigue loadings. Cast steel node joint consists of two parts: casting itself and the welds between the node and the steel member. The fatigue resistances of these two parts are very different; the experiment results showed very clearly that the fatigue behavior was governed by the welds in all tested configurations. This paper focuses on the balance fatigue design of these two parts in a cast steel node joint using fracture mechanics and FEM. The defects in castings are simulated by cracks conservatively. The final crack size is decided by the minimum of 90% of the wall thickness and the value deduced by fracture toughness. The allowable initial crack size could be obtained through the integral of Paris equation when the crack propagation life is considered equal to the weld fatigue life; therefore, the two parts in a cast steel node joint will have a balance fatigue life.
机译:铸钢节点由于其先进的机械性能和柔性形式而在钢结构联合应用中越来越受欢迎。这种接头可明显提高结构的抗疲劳能力,并有望在具有疲劳载荷的结构中广泛使用。铸钢节点接头由两部分组成:铸件本身以及节点与钢构件之间的焊缝。这两个零件的抗疲劳性差异很大。实验结果非常清楚地表明,在所有测试配置中,疲劳行为均受焊缝控制。本文重点研究了使用断裂力学和有限元方法在铸钢节点接头中这两部分的平衡疲劳设计。保守地通过裂纹模拟铸件中的缺陷。最终的裂纹尺寸取决于壁厚的最小值90%和断裂韧性得出的值。当裂纹扩展寿命被认为等于焊接疲劳寿命时,可以通过巴黎方程的积分来获得允许的初始裂纹尺寸。因此,铸钢节点接头中的两个零件将具有平衡的疲劳寿命。

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