A Gating System Design to Reduce the Gas Porosity for Die Casting Mobile Device

J. Jang, Jun Hyung Kim, Chulhee Han
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Abstract

Usually, the die-cast components used in small mobile devices require finishing processes, such as computer numerically controlled coating. In such cases, porosity is the most important defect. The shape of the molten aluminum that passes through the runner and gate in a mold is the one of the factors that influences gas porosity. To define the spurt index, which numerically indicates the shape of molten aluminum after the gate, Reynolds number and Ohnesorge number are used. Before die fabrication, computer-aided engineering analysis is performed to optimize the filling pattern. Finally, X-ray and surface inspection are performed after casting and machining to evaluate how the spurt index affects porosity and other product parameters. Based on the results obtained herein, a new gating system design process is suggested.
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降低压铸移动装置气孔率的浇注系统设计
通常,用于小型移动设备的压铸部件需要精加工工艺,例如计算机数控涂层。在这种情况下,气孔是最重要的缺陷。在模具中,通过流道和浇口的铝液的形状是影响气体孔隙率的因素之一。为了确定喷射指数,用数值表示浇口后铝液的形状,使用了雷诺数和奥内乔治数。在模具制造之前,进行了计算机辅助工程分析,以优化填充模式。最后,在铸造和加工后进行x射线和表面检测,以评估喷射指数对孔隙率和其他产品参数的影响。在此基础上,提出了一种新的浇注系统设计方法。
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