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Implementing CFD Modelling to Address Defect Formation in Core Injection Moulding

机译:实施CFD建模以解决型芯注射成型中的缺陷形成

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摘要

Ceramic cores are used in casting processes to create complex internal shapes within the final component. The work presented here uses Computational Fluid Dynamics (CFD) analysis to predict the filling and solidification behaviour of ceramic core material during the Ceramic Injection Moulding (CIM) process in the large, complex geometries now typical of modern cores. The aim of the study is to develop a predictive capability to identify key defects in the core that might otherwise only be observed after a number of expensive manufacturing processes. Manufacturing trials using short shots have been carried out in order to validate the transient flow patterns of the paste; this has highlighted the occurrence of jetting, weld lines and flow defects that are highly dependent on the injection parameters and runner designs employed. Analysis of the modelled solidification, shear rates, stagnation points and phase migration has driven die and process optimisation in a production environment.
机译:在铸造过程中使用陶瓷芯,以在最终组件中创建复杂的内部形状。本文介绍的工作使用计算流体动力学(CFD)分析来预测陶瓷芯材料在陶瓷注射成型(CIM)过程中在当今典型的大型复杂几何形状中的填充和凝固行为。该研究的目的是开发一种预测能力,以识别核心中的关键缺陷,否则这些缺陷只有在许多昂贵的制造过程之后才能观察到。为了验证焊膏的瞬态流动模式,已经进行了使用短注射法的制造试验。这突出了喷射,熔合线和流动缺陷的发生,这在很大程度上取决于所采用的喷射参数和流道设计。对建模的凝固,剪切速率,停滞点和相迁移的分析已推动了生产环境中模具和工艺的优化。

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