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Modern Optimization Methods in Minimum Weight Design of Elastic Annular Rotating Disk with Variable Thickness

机译:具有可变厚度的弹性环形旋转盘的最小重量设计现代优化方法

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Rotating disks work mostly at high angular velocity and this results a large centrifugal force and consequently induce large stresses and deformations. Minimizing weight of such disks yields to benefits such as low dead weights and lower costs. This paper aims at finding an optimal disk thickness profile for minimum weight design using the simulated annealing (SA) and particle swarm optimization (PSO) as two modern optimization techniques. In using semi-analytical the radial domain of the disk is divided into some virtual sub-domains as rings where the weight of each rings must be minimized. Inequality constrain equation used in optimization is to make sure that maximum von Mises stress is always less than yielding strength of the material of the disk and rotating disk does not fail. The results show that the minimum weight obtained for all two methods is almost identical. The PSO method gives a profile with slightly less weight (6.9% less than SA) while the implementation of both PSO and SA methods are easy and provide more flexibility compared with classical methods.
机译:旋转磁盘大多数以高角速度工作,这导致了大的离心力,因此诱导了大的应力和变形。最小化这种磁盘的重量产生诸如低死重等的益处和降低成本。本文旨在使用模拟退火(SA)和粒子群优化(PSO)作为两个现代优化技术来查找最低重量设计的最佳磁盘厚度型材。在使用半分析的情况下,磁盘的径向域被分成一些虚拟子畴,如必须最小化每个环的重量的环。优化中使用的不等式约束等式是确保最大von误声应力总是小于磁盘和旋转盘的材料的强度不会失效。结果表明,对于所有两种方法获得的最小重量几乎相同。 PSO方法为PSO和SA方法的实施方式提供略低于重量略低于重量(比SA的6.9%),与经典方法相比,PSO和SA方法的实施方便,提供了更大的灵活性。

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