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An Overall Interaction Concept for an alternative approach to steel members design

机译:钢构件设计的替代方法的整体交互概念

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The present paper focuses on a new, alternative design philosophy: the Overall Interaction Concept (O.I.C.). This concept, based on the well-established resistance-instability interaction and the definition of a generalised relative slenderness, was thought and built to i) improve actual design practice, ii) increase accuracy, iii) advance simplicity and consistency, and iv) provide a sound framework for computer-assisted resistance predictions. This paper first details the bases and features of the O.I.C. approach, and provides mechanical interpretations of its application steps. Comprehensive sets of results at the cross-sectional level are then presented, for both H-shaped and hollow sections. Ayrton-Perry-based X-lambda design relationships for hollow structural shapes are proposed and shown to lead to more accurate, consistent and safe resistances when compared to Eurocode 3 rules, in addition to being significantly simpler in application. As for the behaviour and response of members, numerous F.E. results are reported, demonstrating the potential of a X-lambda approach to successfully apply to members under combined load cases. Also, the challenging case of coupled instabilities is investigated, and the O.I.C. approach is showed to be very efficient and appropriate. Further developments towards the derivation of full O.I.C. procedures to steel members are currently under way. (C) 2017 Published by Elsevier Ltd.
机译:本论文重点介绍一种新的替代设计理念:总体交互概念(O.I.C.)。该概念基于公认的电阻-不稳定性相互作用和广义相对细长度的定义,被认为并构建为:i)改善实际设计实践,ii)提高准确性,iii)简化并保持一致性,iv)提供一个可靠的计算机辅助阻力预测框架。本文首先详细介绍了O.I.C.的基础和功能。方法,并提供其应用步骤的机械解释。然后介绍了H形和空心截面的横截面水平的综合结果。提出了针对空心结构形状的基于Ayrton-Perry的X-lambda设计关系,与欧洲规范3规则相比,该关系显示出更精确,一致和安全的抵抗力,并且在使用上更加简单。关于成员的行为和响应,据报道有大量F.E.结果,证明了X-lambda方法在组合载荷情况下成功应用于成员的潜力。此外,还研究了耦合不稳定性的具有挑战性的情况,并进行了O.I.C.这种方法被证明是非常有效和适当的。进一步推导完整的O.I.C.目前正在对钢构件进行处理。 (C)2017由Elsevier Ltd.发布

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