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An evolutionary approach for cooling system optimization in plastic injection moulding

机译:注塑成型冷却系统优化的进化方法

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The cooling process is of great importance in plastic injection moulding as it has a direct impact on both productivity and product quality. Cooling process optimization is a sophisticated task which includes not only the design of cooling channels but also the selection of process parameters. Most existing optimization systems focus on either cooling channel design or process parameter selection but not both. This paper explores an approach to optimize both cooling channel design and process condition selection simultaneously through an evolutionary algorithm. The prototype system proposed in this paper is an integration of the genetic algorithm and CAE (Computer-Aided Engineering) technology. The aim is to launch a computerized system that can guide the optimization of the cooling process in plastic injection moulding. The objective is to achieve the most uniform cavity surface temperature to assure product quality.
机译:冷却过程在塑料注射成型中非常重要,因为它直接影响生产率和产品质量。冷却过程优化是一项复杂的任务,不仅包括冷却通道的设计,还包括过程参数的选择。大多数现有的优化系统都专注于冷却通道设计或过程参数选择,但不能同时关注两者。本文探索了一种通过进化算法同时优化冷却通道设计和工艺条件选择的方法。本文提出的原型系统是遗传算法和CAE(计算机辅助工程)技术的集成。目的是启动一个计算机系统,该系统可以指导塑料注射成型中冷却过程的优化。目的是获得最均匀的型腔表面温度,以确保产品质量。

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