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Effect of Parameters of Isopipe on the Quality of Glass Sheet Produced from Overflow Fusion Process by Numerical Simulation

机译:等压率对溢流融合过程中数值模拟产生的玻璃板质量的影响

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A numerical model for simulation of molten glass flow with semi-implicit method for pressure-linked equations (SIMPLE) and Volume of fluid (VOF) method during the overflow fusion process was carried out by using FLUENT software. The effect of the geometry parameters of the isopipe and flow rate of molten glass on the flow patterns during overflow was investigated. The results showed that the overflow trough depth only had an effect on the flow rate distribution of glass melt around the inlet point. The tilt angle at the top of the trough had a significant effect on flow rate distribution along the length of the trough, and the desired mass distribution was achieved at the tilt angle 4°~6°. The flow rate had a large influence on the overflow of the molten glass, which had a directive significance to the overflow down draw sheet manufacturing process.
机译:用流畅的软件对溢流融合过程进行半隐含方法模拟熔融玻璃流动熔融玻璃流量的数值模型,进行了溢流融合过程中的流体(VOF)方法。研究了熔融玻璃上的几何参数对溢流过程中的熔融玻璃的流速的影响。结果表明,溢流槽深度仅对入口点周围的玻璃熔体的流量分布仅产生影响。槽顶部的倾斜角对沿槽的长度的流速分布具有显着影响,并且在倾斜角4°〜6°处实现所需的质量分布。流量对熔融玻璃的溢流具有很大影响,该熔融玻璃溢出对溢流的溢出纸制造工艺具有指导意义。

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