首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Optimal Gating System Design of Steel Casting by Fruit Fly Optimization Algorithm Based on Casting Simulation Technology
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Optimal Gating System Design of Steel Casting by Fruit Fly Optimization Algorithm Based on Casting Simulation Technology

机译:基于铸造仿真技术的果蝇优化算法钢铸件最优浇注系统设计

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摘要

Casting simulation technology is an effective method to provide the predicted information on defects such as shrinkage, gas entrapment, cold shut, misrun and inclusions. To extend the analysis of casting simulation technology, a new optimal method for gating system design by fruit fly optimization algorithm (FOA) is proposed in this paper. First, according to the filling principles of steel casting, the gating system geometry mathematical model, which includes objective function and constraint conditions, is established. Second, in order to obtain optimal solution, fruit fly optimization algorithm is introduced to solve the above model. Finally, numerical simulation software is used to verify the validity of the proposed optimal method. Taking an upper center plate casting as an example, the results indicate that the proposed optimal method could provide practical and useful suggestions for the designer to obtain higher-quality and lower-resource-cost designs in the gating system design process.
机译:铸造仿真技术是提供有关收缩,气体夹带,冷闭,误流和夹杂物等缺陷的预测信息的有效方法。为了延长铸造仿真技术的分析,本文提出了一种通过果蝇优化算法(FOA)采用果实飞行系统设计的新优化方法。首先,根据钢铸件的填充原理,建立了包括目标函数和约束条件的门控系统几何数学模型。其次,为了获得最佳解决方案,引入了果蝇优化算法来解决上述模型。最后,使用数值模拟软件用于验证所提出的最佳方法的有效性。采用上部中心板铸造作为示例,结果表明,所提出的最优方法可以为设计者提供实用和有用的建议,以便在门控系统设计过程中获得更高质量和更低的资源成本设计。

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