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AUTOMATIC OPTIMIZATION OF CASTING FEEDERS USING FEED-PATHS GENERATED BY VEM

机译:利用VEM生成的进料路径自动优化浇铸料

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Feeding or risering system of a casting significantly affects the internal quality as well as the yield of a casting. It is however, quite difficult to predict the effect of a particular set of feeder design parameters (such as location, shape and dimensions) on casting quality. Hence feeding system design is iterative in practice, involving tooling modification, foundry trials and inspection. Computer simulation can save material and production resources involved in foundry trials, but requires a higher level of human effort for preparing the inputs and interpreting the results properly. In this work, we have evolved a new approach to evaluate and optimize casting feeding system design using feed-paths. The feed-paths are computed by Vector Element Method (VEM). It is possible to automatically track the direction of the feed metal flow from a given point, and to check if a feeder is effective. The convergence of the feed-paths provides a clear indication of directional solidification and location of shrinkage defects. Further, this takes a fraction of the time taken by FEM-based simulation, making it more useful for practical application. The proposed approach is demonstrated by automatically optimizing the feeder size for a benchmark casting, and validated by pouring and sectioning Al-alloy castings made in sand molds.
机译:铸件的进给或提升系统会显着影响铸件的内部质量以及产量。但是,很难预测一组特定的冒口设计参数(例如位置,形状和尺寸)对铸件质量的影响。因此,进料系统的设计在实践中是反复进行的,涉及工具的修改,铸造厂的试验和检查。计算机仿真可以节省铸造试验中涉及的材料和生产资源,但需要更高水平的人工来准备输入并正确解释结果。在这项工作中,我们开发了一种使用进给路径评估和优化铸件进给系统设计的新方法。馈送路径是通过矢量元素方法(VEM)计算的。可以自动跟踪给定点的进料金属流向,并检查进料器是否有效。进料路径的收敛提供了方向性凝固和收缩缺陷位置的清晰指示。此外,这只花费了基于FEM的仿真所花费的时间的一小部分,使其在实际应用中更加有用。通过自动优化基准铸件的冒口尺寸来证明所提出的方法,并通过浇铸和剖切砂型制成的铝合金铸件来进行验证。

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