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Moment-rotation behaviour of top-seat angle bolted connections produced from austenitic stainless steel

机译:奥氏体不锈钢制成的顶座角螺栓连接的力矩旋转特性

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摘要

Use of stainless steel alloys for structural applications could provide a more efficient balance between design life expenses in addition to in-service performance. To achieve safe and economic design rules, an appropriate understanding of the mechanical response of structural components, as well as connection systems produced from stainless steel, is required. Over the last two decades, significant research has been carried out on stainless steel members, but the moment-rotation (M - phi ) behaviour of stainless steel connections is yet to be thoroughly investigated. Top-seat angle connections are widely used in traditional bare steel constructions due to their ability to transfer both the vertical reaction as well as the end moment, and their behaviour is classified as partially restrained or semi-rigid in nature. The current study investigated the M - phi behaviour of austenitic stainless steel top-seat angle bolted connections. The Finite Element (FE) modelling technique using ABAQUS was used to develop appropriately validated numerical models based on the experimental evidence available from the relevant literature. Significant strain hardening exhibited by the austenitic grades was considered in FE modelling. The effects of a number of key geometric parameters such as angle thickness, gauge distance, depth of beam, bolt size and length of angle were considered. The results obtained from the parametric study were used to develop an analytical model based on the power model approach suggested by Richard Abbott (1975); and the performance of the developed model was also verified. The proposed simple connection model will enable predicting the M - phi behaviour of stainless steel top-seat angle bolted connections using easily obtainable geometric and material properties.
机译:在结构应用中使用不锈钢合金可以在使用寿命内提供设计寿命费用之间的更有效平衡。为了达到安全和经济的设计规则,需要对结构部件的机械响应以及由不锈钢制成的连接系统有适当的了解。在过去的二十年中,已经对不锈钢构件进行了大量研究,但是不锈钢接头的力矩-旋转(M-phi)行为仍有待深入研究。顶座角连接件由于能够传递垂直反作用力和端力矩而广泛用于传统的裸钢结构中,其行为本质上被分类为部分约束或半刚性。当前的研究调查了奥氏体不锈钢顶座角螺栓连接的M-phi行为。基于从相关文献中获得的实验证据,使用ABAQUS的有限元(FE)建模技术用于开发经过适当验证的数值模型。在有限元建模中考虑了奥氏体等级表现出的显着应变硬化。考虑了许多关键几何参数的影响,例如角度厚度,标距,梁的深度,螺栓尺寸和角度长度。从参量研究中获得的结果用于基于理查德·阿伯特(Richard Abbott,1975)提出的幂模型方法建立分析模型。并验证了所开发模型的性能。提出的简单连接模型将能够使用容易获得的几何和材料特性来预测不锈钢顶座角螺栓连接的M-phi行为。

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