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Towards Enhancing the Potential of Injection Molding Tools through Optimized Close-Contour Cooling and Additive Manufacturing

机译:通过优化的近距离轮廓冷却和添加剂制造来提高注塑工具的潜力

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摘要

This work deals with the parametric optimization of the position and form of a conformal cooling used in the injection molding industry. Based on a literature survey, an optimization routine concerning the parameter optimization of cooling system designs was developed and implemented with the help of the software package Moldflow. The main objective of the optimization is to reduce the cooling time; the second is to obtain an optimized homogeneous temperature distribution over the complete tool surface. To enable a comparison of the new close-contour solution with a classical manufacturing process, an optimized cooling system simulation, based on a conventional manufacturing solution, was established. It can be shown that the optimized close-contour cooling design offers significant advantages that cannot be exploited using classical manufacturing. Finally, the additive manufacturing of a prototype in the framework of powder bed fusion is documented as a proof of concept.
机译:这项工作涉及注射成型工业中使用的保形冷却的位置和形式的参数优化。基于文献调查,开发并在软件包Moldflow的帮助下开发并实施了关于冷却系统设计参数优化的优化例程。优化的主要目的是降低冷却时间;第二是在完整的工具表面上获得优化的均匀温度分布。为了使新的闭合轮廓解决方案与经典制造工艺进行比较,建立了基于传统制造解决方案的优化冷却系统仿真。可以证明,优化的近距离轮廓冷却设计提供了具有古典制造无法利用的显着优势。最后,记录了粉末覆盖框架框架中原型的添加剂制造被记录为概念证明。

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