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Study on Air Accumulation and Influence on Flow Balance in Micro-lnjection Molding

机译:微注射成型中的空气积聚及其对流动平衡的影响研究

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摘要

The conventional finite element method was employed to study the relationship between melt filling and air accumulation in micro-cavities. The variational equation for melt flow with slip boundary condition and air resistance was generalized based on Galerkin principle. To investigate the effect of air accumulation, the governing equation for air flow inside runner was established by dimensionless method. An iterative approach was proposed to solve the coupled melt flow problem and airflow problem. Numerical results show that air accumulation can affect the melt filling in micro-cavity, and closely depends on injection speed. Adjusting branch runner distribution can improve the flow balance, which was convinced by a real micro-part manufacturing.
机译:采用传统的有限元方法研究了微腔中熔体填充与空气聚集之间的关系。基于Galerkin原理,推导了具有滑移边界条件和空气阻力的熔体流动变分方程。为了研究空气积聚的影响,采用无量纲方法建立了转轮内部气流的控制方程。提出了一种迭代方法来解决耦合的熔体流动问题和气流问题。数值结果表明,空气的积聚会影响微腔中的熔体填充,并密切依赖于注射速度。调整分支流道的分布可以改善流量平衡,这是真正的微型零件制造所信服的。

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