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Towards a consistent design approach for steel joints under generalized loading

机译:在通用载荷下寻求一致的钢接头设计方法

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The behaviour of steel joints is complex and requires the proper consideration of a multitude of phenomena, ranging from material non-linearity (plasticity, strain-hardening), non-linear contact and slip, geometrical non-linearity (local instability) to residual stress conditions, and complicated geometrical configurations. The component method is widely accepted as the practical approach in predicting the behaviour of steel joints and it provides detailed procedures to evaluate the strength and initial stiffness of steel joints, as specified in Eurocode 3. Current safety concerns for steel structures require that steel joints are designed to perform adequately under a wider range of loading conditions: besides standard static loading conditions, fire and seismic loading must often be considered. In addition, robustness requirements impose that joints present a minimum level of resistance for any arbitrary loading. Predicting the 3-D behaviour of steel joints under arbitrary loading must thus be achieved in a practical way. This paper presents the results of a series of experimental developments that attempt to contribute to the knowledge of the 3D behaviour of steel joints, under static and dynamic conditions, and to discuss a possible framework for these general conditions that is in line with the principles of the component method.
机译:钢制接头的行为很复杂,需要适当考虑多种现象,从材料非线性(塑性,应变硬化),非线性接触和滑移,几何非线性(局部不稳定性)到残余应力条件和复杂的几何构造。构件方法已被广泛认为是预测钢接头性能的实用方法,并且它提供了详细的程序来评估钢接头的强度和初始刚度,如欧洲规范3所规定。设计用于在更大范围的载荷条件下充分发挥作用:除了标准静态载荷条件外,还必须经常考虑火灾和地震载荷。另外,对鲁棒性的要求还要求接头在承受任意载荷时必须表现出最小的阻力水平。因此,必须以实用的方式预测钢接头在任意载荷下的3D行为。本文介绍了一系列实验开发的结果,这些实验试图有助于了解钢接头在静态和动态条件下的3D行为,并讨论符合这些基本原理的这些一般条件的可能框架。组件方法。

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