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Application of an iterative global approximation technique to structural optimizations

机译:迭代全局逼近技术在结构优化中的应用

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摘要

An iterative global approximation technique based on the Kriging method is proposed. The technique is validated through analytical test cases and then applied to solve two practical optimization problems: the optimization of aluminium-foam filled absorbers against crashworthiness requirements and the optimization of composite stiffened panels against buckling and strength constraints. The absorbers of the first application consist of two co-axial aluminium alloy tubes filled with lightweight aluminium foam. They were optimized to collapse at a controlled force level and to be the lightest possible. Explicit Finite element analyses were performed to evaluate the structural behavior of the absorbers in the sample points used to build the approximation. In the second application stiffened panels were optimized against buckling and strength constraints. The Tsai-Wu criterion was used to estimate first-ply failures as strength limit of the structure. Non-linear Riks analyses were performed with ABAQUS/Standard to evaluate the shell behavior in the sample points used to build the response surfaces. Basing on the obtained results the proposed iterative procedure seems a promising alternative to the classic a-priori building of response surface allowing better accuracy and saving of sample points.
机译:提出了一种基于克里格方法的迭代全局逼近技术。通过分析测试案例验证了该技术,然后将该技术应用于解决两个实际的优化问题:针对防撞性要求的铝泡沫填充吸收器优化以及针对屈曲和强度约束的复合加劲板的优化。第一个应用的吸收器由两个同轴铝合金管组成,这些铝合金管填充有轻质泡沫铝。它们经过了优化,可以在可控制的力水平下崩溃,并且尽可能轻。进行了显式有限元分析,以评估吸收器在用于建立近似值的采样点中的结构行为。在第二个应用中,优化了加劲板以抵抗屈曲和强度约束。 Tsai-Wu准则用于估计作为结构强度极限的第一层破坏。使用ABAQUS / Standard进行了非线性Riks分析,以评估用于构建响应曲面的采样点中的壳行为。根据获得的结果,所提出的迭代过程似乎是对响应面的经典先验构建的一种有前途的替代方法,从而可以实现更好的精度并节省采样点。

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