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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Fixture Layout Design of Sheet Metal Parts Based on Global Optimization Algorithms
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Fixture Layout Design of Sheet Metal Parts Based on Global Optimization Algorithms

机译:基于全局优化算法的钣金零件夹具布局设计

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摘要

Fixture layout can affect deformation and dimensional variation of sheet metal assemblies. Conventionally, the assembly dimensions are simulated with a quantity of finite element (FE) analyses, and fixture layout optimization needs significant user intervention and unaffordable iterations of finite element analyses. This paper therefore proposes a fully automated and efficient method of fixture layout optimization based on the combination of 3dcs simulation (for dimensional analyses) and global optimization algorithms. In this paper, two global algorithms are proposed to optimize fixture locator points, which are social radiation algorithm (SRA) and GAOT, a genetic algorithm (GA) in optimization toolbox in matlab . The flowchart of fixture design includes the following steps: (1) The locating points, the key elements of a fixture layout, are selected from a much smaller candidate pool thanks to our proposed manufacturing constraints based filtering methods and thus the computational efficiency is greatly improved. (2) The two global optimization algorithms are edited to be used to optimize fixture schemes based on matlab . (3) Since matlab macrocommands of 3dcs have been developed to calculate assembly dimensions, the optimization process is fully automated. A case study of inner hood is applied to demonstrate the proposed method. The results show that the GAOT algorithm is more suitable than SRA for generating the optimal fixture layout with excellent efficiency for engineering applications.
机译:夹具布局可以影响金属板组件的变形和尺寸变形。传统上,通过有限元(FE)分析模拟组件尺寸,并且夹具布局优化需要有限的用户干预和有限元分析的不变化迭代。因此,本文提出了一种基于3DCS仿真(用于尺寸分析)和全局优化算法的组合来全自动和高效的夹具布局优化方法。在本文中,提出了两个全局算法来优化Matlab中优化工具箱中的社会辐射算法(SRA)和GaOT,遗传算法(GA)的夹具定位点。夹具设计的流程图包括以下步骤:(1)由于我们所提出的基于制造限制的滤波方法,因此,夹具布局的关键元件,夹具布局的关键元素选自更小的候选池,因此计算效率大大提高了计算效率。 (2)编辑两个全局优化算法以用于优化基于MATLAB的夹具方案。 (3)由于已经开发了3DC的MATLAB宏茂的宏茂来计算组装尺寸,因此优化过程完全自动化。应用内罩的案例研究证明了所提出的方法。结果表明,仪表算法比SRA更适合于产生最佳夹具布局,以优异的工程应用效率。

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