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Finite-element modelling and design guidelines for axial compressive capacity of aluminium alloy circular hollow sections with holes

机译:具有孔铝合金圆形空心截面轴压容量的有限元建模与设计指南

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This paper presents a finite-element (FE) investigation on the axial compressive capacity of aluminium alloy circular hollow sections (CHSs) with circular holes. The geometrical and material non-linearities were considered in the finite-element analysis (FEA). Two consecutive steps including an eigenvalue analysis and a load displacement non-linear analysis were performed in the FEA. The FE models were validated against the test results reported by the first author in a previous study. The validated FE models were used to conduct an extensive parametric study comprising 300 FE models, to investigate the effects of five geometrical parameters on axial compressive capacity: the wall thickness, overall length, the diameter, and the quantity and location of the circular through-holes. In addition, a comparison was performed between the FEA strengths and design strengths calculated using the design formulae of American Design Manual (AA), European Code (EC9), Australian/New Zealand Standard (AS/NZS), Chinese Code for imperforated members, and North American Specification (NAS). Moreover, the FEA strengths were compared against the design strengths calculated from the proposed design guidelines of Dhanalakshmi and Shanmugam, Shanmugam et al., Shanmugam and Dhanalakshmi, and Moen and Schafer for cold-formed steel (CFS) sections with holes. The comparison of design strengths against FEA results showed that the current design formulae for CFS perforated sections are not suitable for aluminium alloy CHSs with circular holes. Therefore, new design equations were proposed based on the current design formulae that use effective area method (EAM) by considering the influences of key geometrical parameters.
机译:本文介绍了圆孔铝合金圆形空心部分(CHS)轴向压缩容量的有限元素(FE)研究。在有限元分析(FEA)中考虑了几何和材料的非线性。在FEA中进行包括特征值分析和负载位移非线性分析的连续两个步骤。 FE模型针对先前研究中第一个作者报告的测试结果进行了验证。经过验证的FE模型用于进行包括300个FE模型的广泛参数研究,以研究五个几何参数对轴向压缩容量的影响:壁厚,总长度,直径和圆形的数量和位置 - 洞。此外,在使用美国设计手册(AA)的设计公式,欧洲代码(EC9),澳大利亚/新西兰标准(AS / NZS)计算的FEA强度和设计优势之间进行了比较,欧洲代码(EC9),中国代码,用于核心的议员,和北美规格(NAS)。此外,比较FEA强度与从Dhanalakshmi和Shanmugam,Shanmugam等,DhanaLakshmi的拟议设计指南计算的设计强度,以及带孔的冷成型钢(CFS)部分的莫森和Schafer。对FEA的设计强度的比较结果表明,CFS穿孔部分的电流设计公式不适用于圆孔的铝合金CHS。因此,通过考虑关键几何参数的影响,基于使用有效区域方法(EAM)的当前设计公式来提出新的设计方程。

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