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Analytical Formulation For The Deformations Of I-shapes And Rhs At The plastic Strain Ultimate Limit State

机译:塑性应变极限极限状态下I形和Rhs变形的解析公式

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The development of "full plastic hinges" in the most stressed cross-sections is a common hypothesis considered in the elastic-plastic design of steel structures. The equations for the internal forces at the plastic limit state are then based on equilibrium conditions only, and they do not allow the global deformations corresponding to each combination of internal forces at this ultimate limit state to be estimated. This paper presents a simplified analytical model for the elastic-plastic analysis of rectangular hollow sections and bisymmetrical I-sections bent about their strong axis. This model states the relations between the global deformations (axial deformation and bending curvature) and the corresponding internal forces (axial force and bending moment) at the cross-section plastic strain ultimate limit state. It allows a realistic evaluation of the cross-section ductility, based on a relevant strain limitation at the most strained cross-section fibres.
机译:在钢结构的弹塑性设计中,最受应力的横截面中“全塑料铰链”的发展是一个普遍的假设。然后,在塑性极限状态下的内力方程式仅基于平衡条件,并且它们不允许估算与在此极限极限状态下的内力的每种组合相对应的整体变形。本文提出了一种简化的分析模型,用于矩形空心截面和绕其强轴弯曲的双对称I型截面的弹塑性分析。该模型说明了在截面塑性应变极限极限状态下的整体变形(轴向变形和弯曲曲率)与相应的内力(轴向力和弯曲力矩)之间的关系。基于在最应变的横截面纤维上的相关应变限制,可以对横截面的延展性进行实际评估。

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