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Numerical analysis and design of concrete-filled aluminum circular hollow section columns

机译:铝圆空心混凝土柱的数值分析与设计。

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This paper presents numerical investigation and design of concrete-filled aluminum circular hollow section (CHS) columns. A non-linear finite element model is developed and verified against experimental results. An extensive parametric study was carried out to study the effects of cross-section geometries and material properties on the concrete-filled aluminum CHS column strengths. A total of 192 numerical data is presented in this study. The aluminum CHS tubes of normal strength material (T5) and high strength material (T6) using three different nominal concrete cylinder strengths of 40, 70 and 100 MPa were investigated. The nominal outer diameter-to-thickness (D/t) ratio of the sections ranged from 10 to 160. The test and numerical results of the concrete-filled aluminum CHS columns were compared with the design strengths to evaluate the reliability of the design rules in the American and Australian/New Zealand specifications for aluminum and concrete structures. Furthermore, the composite column design equations are proposed in this study. The proposed design equations consider the benefits of composite action between the aluminum CHS tube and the concrete infill. It is shown that the proposed design equations accurately predicted the strengths of the concrete-filled aluminum CHS columns.
机译:本文介绍了混凝土填充铝圆空心截面(CHS)柱的数值研究和设计。建立了非线性有限元模型,并针对实验结果进行了验证。进行了广泛的参数研究,以研究横截面几何形状和材料特性对混凝土填充铝制CHS柱强度的影响。这项研究总共提供了192个数值数据。研究了使用40、70和100 MPa三种不同标称混凝土圆柱强度的普通强度材料(T5)和高强度材料(T6)的铝制CHS管。截面的标称外径与厚度比(D / t)在10到160之间。将填充的铝制CHS柱的测试和数值结果与设计强度进行比较,以评估设计规则的可靠性。符合美国和澳大利亚/新西兰关于铝和混凝土结构的规范。此外,本研究提出了复合柱设计方程。提出的设计方程式考虑了CHS铝管和混凝土填料之间的复合作用的好处。结果表明,所提出的设计方程能够准确预测混凝土填充铝制CHS柱的强度。

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