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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >The application of U-shape milled grooves for cooling of injection moulds
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The application of U-shape milled grooves for cooling of injection moulds

机译:U型铣槽在注塑模具冷却中的应用

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摘要

In the injection moulding process, productivity and part quality depend largely on the cooling system of the injection mould. Several cooling methods are being adopted by the mould industry, with the straight-drilled cooling channels method being the most popular. Many reported research activities have been based on this method, but the method has several limitations that prevent it from achieving efficient and uniform cooling. In the present work, a U-shape milled groove method was proposed for large and complicated parts, especially for parts with large free-formed surfaces. Simulations were made to compare the cooling effect of U-shape milled grooves with that of straight cooling channels using COSMOS/DESIGNSTAR, an analysis software based on the finite element method (FEM). The heat flux was calculated on a cycle-averaged basis and the natural convection between ambient air and the exterior mould surface was ignored. A mouse cover was used as a case study. The U-shape milled grooves were found to have better temperature control than straight cooling channels. The temperature distributions of the core and cavity with U-shape milled grooves were more uniform than with straight cooling channels. Moreover, the U-shape milled grooves removed the heat efficiently; the mould temperature was lower than that with straight cooling channels. The U-shape milled grooves method has demonstrated its advantages in mould cooling. Although U-shape milled grooves need to be machined using computer numerical control (CNC) machines and more machining time is required, making them more expensive than straight cooling channels, their potential benefits will be explored for practical applications.
机译:在注塑过程中,生产率和零件质量很大程度上取决于注塑模具的冷却系统。模具行业正在采用几种冷却方法,其中最常用的是直钻式冷却通道方法。许多报道的研究活动都基于这种方法,但是该方法有一些局限性使其无法实现有效且均匀的冷却。在目前的工作中,提出了一种U形铣槽方法,适用于大型复杂零件,尤其是具有较大自由曲面的零件。使用COSMOS / DESIGNSTAR(一种基于有限元方法(FEM)的分析软件)进行了仿真,以比较U型铣槽的冷却效果和直冷却通道的冷却效果。根据周期平均值计算热通量,而忽略了环境空气与模具外部表面之间的自然对流。鼠标盖用作案例研究。发现U型铣槽比直冷却通道具有更好的温度控制。带有U形铣槽的型芯和型腔的温度分布比带有直冷却通道的型芯和型腔的温度分布更均匀。而且,U型铣槽有效地散热。模具温度低于直冷却通道。 U型铣槽方法已证明其在模具冷却方面的优势。尽管需要使用计算机数控(CNC)机加工U形铣槽,并且需要更多的加工时间,这使其比直线冷却通道更昂贵,但在实际应用中将探索其潜在的优势。

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