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首页> 外文期刊>International Journal of Heat and Mass Transfer >Numerical analysis on the effects of different inlet gates and gap heights in TQFP encapsulation process
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Numerical analysis on the effects of different inlet gates and gap heights in TQFP encapsulation process

机译:TQFP封装过程中不同入口浇口和间隙高度影响的数值分析

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摘要

Finite volume method (FVM) based simulation of encapsulation process in thin quad flat pack (TQFP) packages is presented in this paper. The 3D model of TQFP package is built and meshed with tetrahedral elements using GAMBIT, and simulated by FLUENT software. Castro-Macosko viscosity model and volume of fluid (VOF) technique are applied for flow front tracking of the encapsulant. Curing kinetics is taken into consideration in the simulation using Kamal's equation. To solve the Castro-Macosko and Kamal models, suitable user defined functions (UDFs) are developed using MS VISUAL STUDIO.NET software and incorporated into the FLUENT. The parameters such as mold filling time, flow front profiles, pressure distribution in the package and void formation, for three different inlet gate arrangements and gap heights, are analyzed. The degree of conversion of the molding compound during the encapsulation process is also studied for different number of inlet gates. It is found that the filling time and void occurrence could be reduced by increasing the number of inlet gates, and the variation of gap height within the cavity is crucial in controlling the peak pressure. Moreover, the combined effect to two competing events, such as, reduction of viscosity with shear rate due to non-Newtonian behavior of the polymer fluid and increase in viscosity during the curing reaction, are effectively demonstrated. The simulation results are compared with previous experimental results and found in good conformity.
机译:本文介绍了基于有限体积方法(FVM)的薄四方扁平包装(TQFP)封装中封装过程的仿真。使用GAMBIT建立TQFP封装的3D模型并将其与四面体网格划分,并通过FLUENT软件进行仿真。将Castro-Macosko粘度模型和流体体积(VOF)技术应用于密封剂的流动前沿跟踪。在使用卡马尔方程的模拟中考虑了固化动力学。为了解决Castro-Macosko和Kamal模型,使用MS VISUAL STUDIO.NET软件开发了合适​​的用户定义功能(UDF),并将其合并到FLUENT中。针对三个不同的入口浇口布置和间隙高度,分析了诸如模具填充时间,流动前沿轮廓,包装中的压力分布和空隙形成等参数。还针对不同数量的入口浇口研究了封装过程中模塑料的转化程度。发现通过增加入口浇口的数量可以减少填充时间和空隙的产生,并且腔内间隙高度的变化对于控制峰值压力至关重要。此外,有效地证明了对两个竞争事件的组合效果,例如由于聚合物流体的非牛顿行为导致的粘度随剪切速率的降低和固化反应过程中粘度的增加。仿真结果与以前的实验结果进行了比较,发现一致性好。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2011年第10期|p.1861-1870|共10页
  • 作者单位

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Material and Mineral Resources, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

    School of Mechanical and Aerospace Engineering, Universiti Sains Malaysia, Engineering Campus, 14300 Nibong Tebal, Penang, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thin quad flat pack; finite volume method; castro-macosko viscosity model; curing kinetics; volume of fluid;

    机译:薄型四方扁平包装;有限体积法;castro-macosko粘度模型;固化动力学;流体体积;

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