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Lateral bracing of I-girder with corrugated webs under uniform bending

机译:均匀弯曲下波纹腹板工字钢的横向支撑

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Lateral-torsional buckling may occur in an unrestrained beam where its compression flange is free to displace laterally and rotate. This paper presents the results of the theoretical and finite element analyses of the lateral-torsional buckling of l-girders with corrugated webs and lateral bracing, under uniform bending. It is well known that an elastic lateral brace restricts partially the lateral buckling of slender beams and increases the elastic buckling moment. However, a full study of the effect of lateral braces on lateral-torsional buckling has not been made especially for I-girder with corrugated webs. This paper develops a three-dimensional finite element model using ANSYS [User's manual, version 10.0] for the lateral-torsional buckling analysis of I-girder with corrugated webs and uses it to investigate the effects of elastic lateral bracing stiffness on the critical moment of simply supported l-girders with corrugated webs under pure bending. It was found that for plastic and inelastic I-girder with corrugated webs, the effect of bracing initially is increased to some extent as the lateral unbraced length increases and then decreased until the beam behaves as an elastic beam. In other words, the effect of bracing depends not only on the stiffness of the restraint but also on the modified slenderness of the I-girder. Also, the results show that Winter's simplified method to determine full brace requirements cannot be applied to l-girders with corrugated webs. Therefore, a general equation is proposed to determine the value of optimum stiffness (K_(opt)) in terms of the I-girder's slenderness.
机译:横向扭转屈曲可能发生在无约束梁中,其压缩凸缘可以自由地横向移动和旋转。本文介绍了在均匀弯曲的情况下,带有腹板和横向支撑的L型大梁的横向扭转屈曲的理论和有限元分析的结果。众所周知,弹性的横向支撑部分地限制了细长梁的横向屈曲,并增加了弹性屈曲力矩。然而,对于带有波纹腹板的工字钢,还没有对横向支撑对横向扭转屈曲的影响进行全面研究。本文使用ANSYS [用户手册,版本10.0]开发了一个三维有限元模型,用于波纹腹板工字钢的横向扭转屈曲分析,并用于研究弹性横向支撑刚度对临界弯矩的影响。在纯弯曲的情况下,简单支撑带有波纹腹板的L型梁。已发现,对于带有波纹腹板的塑料和非弹性工字梁,随着横向无支撑长度的增加,支撑的效果最初会有所提高,然后逐渐减小,直到梁成为弹性梁为止。换句话说,支撑的效果不仅取决于约束的刚度,还取决于工字钢的改进的细长度。同样,结果表明,温特简化的确定全支撑要求的简化方法无法应用于带有波纹腹板的L型梁。因此,提出了一个通用方程式,用于根据工字梁的细长度确定最佳刚度的值(K_(opt))。

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