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A 3D solid-like frame finite element applied to steel structures under high temperatures

机译:适用于高温钢结构的3D立体框架有限元

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摘要

This study presents the development of a finite element formulation based on positions to deal with steel structures under high temperatures. The nonlinear thermal analysis is done regarding cross sections using two-dimensional flat elements while the three dimensional structural members are modeled by physical and geometrical nonlinear solid-like frame elements of any order. The thermal analysis consists in achieving, along time, the temperature profile at frame elements cross sections that affects the constitutive relations and, consequently, residual stresses at the structural mechanical equilibrium. The proposed element presents a geometrically exact description for large displacements and rotations by means of translations and generalized vectors nodal parameters. The adopted three dimensional Thermo-elastoplastic constitutive relation is based on the von Mises yielding surface for which the temperature dependence is established and an alternative flow rule is developed. Several examples are presented in order to validate the formulation and to show its good results.
机译:这项研究提出了基于位置的有限元公式的开发,以应对高温下的钢结构。非线性热分析是使用二维平面单元对横截面进行的,而三维结构构件则通过任意数量级的物理和几何非线性实体框架模型进行建模。热分析在于,随着时间的流逝,获得框架单元横截面处的温度分布,这会影响本构关系,进而影响结构机械平衡时的残余应力。提出的元素通过平移和广义矢量节点参数,对大位移和旋转给出了几何上的精确描述。所采用的三维热弹塑性本构关系基于冯·米塞斯屈服面,为此建立了温度依赖性,并开发了替代流动规则。给出了几个例子,以验证配方并显示出良好的效果。

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