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The continuous strength method for the design of aluminium alloy structural elements

机译:铝合金结构件设计的连续强度法

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摘要

Aluminium alloys are nonlinear metallic materials with rounded stress–strain curves that are not well represented by the simplified elastic-perfectly plastic material model used in most existing design specifications. Departing from current practice, the continuous strength method (CSM) is a recently developed design approach for aluminium alloy structures, which gives consideration to strain hardening for non-slender sections. The CSM is a deformation-based method and employs a base curve to define the continuous relationship between cross-section slenderness and deformation capacity. This paper explains the background and the two key components of the CSM: (1) the base curve, which is extended herein such that the method covers both non-slender and slender sections and (2) the strain hardening material model. Three international design specifications from America, Australia/New Zealand and Europe, as well as the CSM are compared with approximately 900 aluminium alloy experimental and numerical results. Reliability analyses have been carried out to assess the reliability level of different design methods according to both the American Institute of Steel Construction (AISC) and European Standard (EN 1990) approaches. Finally, worked examples of the CSM for aluminium alloy stub columns and continuous beams are illustrated in this paper.
机译:铝合金是非线性金属材料,具有圆滑的应力-应变曲线,而大多数现有设计规范中使用的简化的弹性完美塑性材料模型并不能很好地代表铝合金。与目前的实践不同,连续强度法(CSM)是最近开发的铝合金结构设计方法,该方法考虑了非细长截面的应变硬化。 CSM是基于变形的方法,它采用基本曲线来定义横截面细长度和变形能力之间的连续关系。本文介绍了CSM的背景和两个关键组成部分:(1)基本曲线(在此进行了扩展,使得该方法既覆盖了非细长段,又覆盖了细长段);(2)了应变硬化材料模型。比较了美国,澳大利亚/新西兰和欧洲的三个国际设计规范以及CSM,并与大约900个铝合金的实验和数值结果进行了比较。根据美国钢结构学会(AISC)和欧洲标准(EN 1990)的方法,已经进行了可靠性分析,以评估不同设计方法的可靠性水平。最后,本文举例说明了铝合金短柱和连续梁的CSM工作实例。

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