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Combined flexure and web crippling strength of a low-ductility high strength steel decking: experiment and a finite element model

机译:低延展性高强度钢甲板的弯曲和腹板综合抗折强度:实验和有限元模型

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摘要

Profiled decking or sheeting of high strength low-ductility steel (ASTM611 Grade E) is a relatively new development in building construction industry. Due to inadequate information, the major international codes of design practices are yet to include this steel, and apply additional restrictions on their design and use. This type of decking shows high sensitivity to distortional as well as local buckling. Strength of such decking under combined flexure and web crippling as well as moment-rotation capacity are of principal concern if such decking is to be designed as a continuous structure to achieve better economy. This paper describes an experimental study of the behaviour of re-entrant decking of low-ductility steel under combined web crippling and flexure. Based on this experimental study, a nonlinear finite element model has been proposed which can predict the moment-rotation characteristics of such decking with reasonable accuracy.
机译:高强度低延展性钢(ASTM611 E级)的​​异型装饰板或板材是建筑行业中的一个相对较新的发展。由于信息不足,主要的国际设计规范尚未将该钢材包括在内,并对其设计和使用施加了其他限制。这种类型的面板显示出对变形以及局部屈曲的高度敏感性。如果将这种铺板设计为连续结构以实现更好的经济性,那么在挠曲和腹板结合弯曲下这种铺板的强度以及力矩旋转能力是主要问题。本文描述了对低延展性钢在腹板弯曲和挠曲相结合的情况下折返板的性能进行的实验研究。在此实验研究的基础上,提出了一种非线性有限元模型,该模型可以合理地预测这种铺面的力矩-旋转特性。

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