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A Simple Method for the Design of Aluminium Structures

机译:一种简单的铝结构设计方法

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Deflections at the serviceability limit state are often decisive in the design of aluminium structures due to the low elastic modulus. Where design is based on deflections, it may not be necessary to calculate the resistance exactly and simple conservative methods are sufficient. The proposed method may be used to generate a quick, approximate and safe solution, perhaps for the purpose of initial member sizing, with the opportunity to refine the calculation for final design. Another reason for the simple method is enhancing ease of use of Eurocode 9.The principal of the proposed method is to eliminate calculation of effective cross-sections by reducing the elastic resistance with the reduction factor for the most slender part of the cross-section or the factor for HAZ softening whichever is less. This means that you don't need to define the cross-section class. The disadvantage is that you don't utilize the plastic reserve for class 1 and 2 cross-sections, nor the redistribution of stresses in the post-buckling range of class 4 cross-sections or sections with HAZ. The procedure is similar to the method with permissible stresses familiar to most engineers.
机译:可维护性极限状态的偏转通常在由于低弹性模量而在铝结构设计方面具有决定性。在设计基于偏转的情况下,可能没有必要计算电阻完全并且简单的保守方法足够。所提出的方法可用于产生快速,近似和安全的解决方案,也许是为了初始成员尺寸的目的,有机会改进最终设计的计算。简单方法的另一个原因是提高欧元造型码的易用性9.所提出的方法的原理是通过降低横截面最小部分的减少因子来消除有效横截面的计算HAZ软化的因素,以较少的方式。这意味着您不需要定义横截面类。缺点是您不利用第1类和2级横截面的塑料储备,也不是屈曲范围内的应力的重新分布在4级横截面或具有HAZ的部分。该过程类似于大多数工程师熟悉的允许应力的方法。

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