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GBT-based elastic-plastic post-buckling analysis of stainless steel thin-walled members

机译:基于GBT的不锈钢薄壁构件的弹塑性后屈曲分析

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When compared with carbon steel, stainless steel exhibits a more pronounced non-linearity and no well-defined yield plateau, as well as appealing features such as aesthetics, higher corrosion resistance and lower life cycle cost Due to its considerably high ductility/strength and cost, stainless steel structural solutions tend to be adopted mostly for slender/light structures, thus rendering the assessment of their structural behaviour rather complex, chiefly because of the high susceptibility to instability phenomena The first objective of this paper is to present the main concepts and procedures involved in the development of a geometrically and materially non-linear Generalised Beam Theory (GBT) formulation and numerical implementation (code), intended to analyse the behaviour and collapse of thin-walled members made of materials with a highly non-linear stress-strain curve (e.g., stainless steel or aluminium). The second objective is to validate and illustrate the application of the proposed GBT formulation, by comparing its results (equilibrium paths, ultimate loads, deformed configurations, displacement profiles and stress distributions) with those provided by shell finite element analyses of two lean duplex square hollow section (SHS) columns previously investigated, both experimentally and numerically, by Theofanous and Gardner (Eng Struct 2009; 31(12): 3047-3058.). The stainless steel material behaviour is modelled as non-linear isotropic and the GBT analysis includes initial geometrical imperfections, but neglects corner strength enhancements and membrane residual stresses. It is shown that the GBT unique modal nature makes it possible to acquire in-depth knowledge concerning the mechanics of the column behaviour, by providing "structural x-rays" of the (elastic or elastic-plastic) equilibrium configurations: modal participation diagrams showing the quantitative contributions of the global, local, warping shear and transverse extension deformation modes - moreover, this feature makes it possible to exclude, from future similar GBT analyses, those deformation modes found to play a negligible role in the mechanics of the behaviour under scrutiny, thus further reducing the number of degrees of freedom involved in a GBT analysis, i.e., increasing its computational efficiency.
机译:与碳钢相比,不锈钢表现出更明显的非线性和无明确的屈服平稳期,并且具有吸引人的特征,例如美观,更高的耐腐蚀性和更低的生命周期成本,因为其相当高的延展性/强度和成本,不锈钢结构解决方案通常用于细长/轻型结构,因此使其结构行为的评估相当复杂,这主要是因为对不稳定现象的敏感性很高。本文的首要目的是介绍主要的概念和步骤参与几何和材料非线性广义梁理论(GBT)公式和数值实现(代码)的开发,旨在分析由具有高度非线性应力应变的材料制成的薄壁构件的行为和破坏曲线(例如,不锈钢或铝)。第二个目标是通过将其结果(平衡路径,极限载荷,变形构型,位移轮廓和应力分布)与两个精益双相方管空心壳有限元分析所提供的结果进行比较,从而验证并说明所提出的GBT公式的应用Theofanous and Gardner(Eng Struct 2009; 31(12):3047-3058。)。不锈钢材料的行为建模为非线性各向同性,GBT分析包括初始几何缺陷,但忽略了拐角强度的提高和膜残余应力。通过提供(弹性或弹塑性)平衡构型的“结构X射线”,GBT的独特模态性质使其有可能获得有关柱行为力学的深入知识:模态参与图整体,局部,翘曲剪切和横向延伸变形模式的定量贡献-而且,此功能使得有可能从以后的类似GBT分析中排除那些在仔细研究下的行为力学中起着微不足道作用的变形模式,从而进一步减少了GBT分析涉及的自由度数量,即提高了其计算效率。

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