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Optimization Design of Heterogeneous Injection Mold Cooling System

机译:非均相注塑模具冷却系统的优化设计

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For the cooling system of plastic injection mold affects significantly the productivity and quality of the finial products, the cooling system design is of great importance. In this paper, considering the location, size, number of cooling channels and mold material properties, the optimization design of heterogeneous injection mold cooling system is discussed to achieve simultaneously fast and uniform cooling. A mathematical model is constructed in which the part temperature distribution uniformity and production efficiency are taken as the objective function for cooling system design of heterogeneous injection mold. For the reason of the non-linearity of design problem and the coupling of geometric with material variable, the design problem is divided into two sub-problems and the combining algorithm is used in such way that, the geometric optimization sub-problem is solved by Hooke-Jeeves method and the material optimization sub-problem is solved by particle swarm optimization (PSO) method. The effectiveness of the approach is illustrated by a design example of injection mold cooling system.
机译:对于塑料注塑模具的冷却系统,显着影响了主要产品的生产率和质量,冷却系统设计具有重要意义。本文考虑了冷却通道和模具材料特性的位置,尺寸,尺寸,讨论了异构注射模具冷却系统的优化设计,以同时快速且均匀的冷却。构建了一种数学模型,其中零件温度分布均匀性和生产效率被视为异构注射模具的冷却系统设计的目标函数。由于设计问题的非线性和几何与材料变量的耦合,设计问题被分成两个子问题,并且以这样的方式使用组合算法,即地,几何优化子问题通过Hooke-Jeeves方法和材料优化子问题通过粒子群优化(PSO)方法解决。通过注射模具冷却系统的设计实例说明了该方法的有效性。

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