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Virtual prototyping in the design process of optimized mould gating system for high pressure die casting

机译:高压压铸件优化浇铸系统设计过程中的虚拟样机

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Purpose - High pressure die casting is a widely used industrial process to manufacture complex-shaped products in light alloys. Virtual prototyping techniques, especially numeric-based simulations of the casting process, allow the die filling process to be evaluated and help faster optimization of the gating system, which is the most critical element of the mould. The purpose of this paper is to present a four step approach to design optimal moulds taking advantage of the simulation tools. Design/methodology/approach - No formalized method to design an optimal gating system is available yet and the majority of the studies aim to optimize existing geometries or to choose from alternative solutions. Rather than optimizing the geometries of predefined designs by running attempt trials, the proposed approach defines a procedure to position cavities, gating systems and, finally, to determine the whole mould geometry. Findings - The approach is demonstrated through three different industrial applications. The design of a six-cavity mould for gas cooking burners is reported at first. Then, two test cases, a cup and a radiator, are reported for showing different arrangements of the gating system. The reached quality of the mould design has been assessed using metallographic analyses of the casts. Originality/value - The design of a mould is strictly correlated to its product and mainly based on a trial-and-error approach. Numerical simulations offer a powerful and not expensive way to study the effectiveness of different die designs and filling processes. The paper proposes a structured approach for the definition of the gating system. It ultimately leads to improvements in both product quality and process productivity, including more effective control of the die filling and die thermal performance.
机译:目的-高压压铸是一种广泛使用的工业过程,用于制造轻合金的复杂形状的产品。虚拟原型技术,尤其是基于数字的铸造过程模拟,可以评估模具填充过程,并有助于更快地优化浇口系统,这是模具的最关键要素。本文的目的是提出一种利用仿真工具来设计最佳模具的四步法。设计/方法/方法-目前尚无用于设计最佳门控系统的正式方法,并且大多数研究旨在优化现有几何形状或从替代解决方案中进行选择。所提出的方法不是通过运行尝试试验来优化预定义设计的几何形状,而是定义了一种用于定位型腔,浇口系统并最终确定整个模具几何形状的过程。调查结果-通过三种不同的工业应用演示了该方法。首先报道了用于燃气烹饪燃烧器的六腔模具的设计。然后,报告了两个测试用例,一个杯子和一个散热器,用于显示门控系统的不同布置。模具设计达到的质量已使用铸件的金相分析进行了评估。原创性/价值-模具的设计与产品严格相关,并且主要基于反复试验的方法。数值模拟提供了一种强大而又不昂贵的方法来研究不同模具设计和填充工艺的有效性。本文提出了一种用于定义门控系统的结构化方法。最终可以提高产品质量和工艺生产率,包括更有效地控制模具填充和模具热性能。

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