利用模拟技术对磨损板砂型铸造浇注系统进行了优化设计

Sachin L. Nimbulkar , Rajendra S. Dalu
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引用次数: 75

摘要

铸造是一种制造复杂形状金属材料的过程;在批量生产过程中,我们可能会遇到许多缺陷,例如砂型铸造中可能出现的气孔,针孔,吹孔,收缩和不完全填充。气孔是球墨铸铁铸件中最常见的缺陷之一。孔隙率通过废料损失影响成本,并限制了铸件在关键高强度应用中的使用。孔隙率的大小与砂型铸造工艺参数密切相关。浇注/冒口系统的设计对提高铸件质量起着非常重要的作用。许多研究者报道,90%的铸件缺陷都是由于浇注系统设计不当造成的。主要目的是研究现有的浇注和喂料系统设计,利用Auto-CAST X1铸造仿真软件对浇注和喂料系统进行优化,准备砂型并浇注零件,将模拟结果与实验结果进行比较,以降低废品率,使公司能够重新开始生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design optimization of gating and feeding system through simulation technique for sand casting of wear plate

Casting is a manufacturing process to make complex shapes of metal materials; during mass production, we may experience many defects, such as gas porosity, pin holes, blow holes, shrinkages and incomplete filling that may occur in sand casting. Porosity is one of the defects most frequently encountered in ductile iron casting. Porosity impacts cost by scrap loss and limits the use of cast parts in critical high strength applications. The amount of porosity is closely related to the parameter of sand casting process. The gating/riser system design plays a very important role for improving casting quality. Many researchers reported that 90% of the defects in casting are obtained only because of improper design of gating and feeding system. The main objectives were to study the existing design of gating and feeding system, to optimize the gating and feeding system using Auto-CAST X1 casting simulation software, to prepare the sand mold and cast the part, to compare the simulated result and experimental results, to reduce rejection rate and to enable the company to again start the production.

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