A dynamic model for predicting the motion of solder droplets during assembly

D. Kulkarni, G. Subbarayan
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引用次数: 5

Abstract

The dynamic motion of a solder droplet during assembly is a complex, unsteady, free surface problem involving surface tension and viscous effects. The motion of the droplet is coupled with the motion of the component or chip to be assembled and involves dynamic contact lines. A methodology based on a Non-Uniform Rational B-Spline (NURBS) discretization has been developed for the dynamic analysis of the droplet motion. A surface energy based formulation has been developed to incorporate the surface tension effects. The developed methodology leads to an updated Lagrangian scheme with a Galerkin in space and least square in time formulation. The Non-Uniform Rational B-Spline (NURBS) representation used, for the spatial discretization enables the method to handle problems involving complex droplet geometries. The ability of the NURBS representation to provide both global and local control, along with the least square method used in this methodology, enables us to develop an unconditionally stable time integration scheme which can be optimized to achieve desired accuracy and numerical dissipation efficiently. A sample problem of droplet shape evolution has been solved to demonstrate the path prediction capability of the proposed methodology. In future, the method can be applied to solve various real world dynamic motion problems associated with droplets.
用于预测焊料液滴在组装过程中运动的动态模型
焊锡液滴在装配过程中的动态运动是一个复杂的、不稳定的自由表面问题,涉及表面张力和粘性效应。液滴的运动与待组装部件或芯片的运动耦合,并涉及动态接触线。提出了一种基于非均匀有理b样条(NURBS)离散化的液滴运动动力学分析方法。一种基于表面能的配方已被开发出来以纳入表面张力效应。所开发的方法导致了一个更新的拉格朗日格式,在空间上具有伽辽金,在时间上具有最小二乘公式。非均匀有理b样条(NURBS)表示用于空间离散化,使该方法能够处理涉及复杂液滴几何形状的问题。NURBS表示提供全局和局部控制的能力,以及该方法中使用的最小二乘法,使我们能够开发无条件稳定的时间积分方案,该方案可以优化以有效地实现所需的精度和数值耗散。通过一个液滴形状演化的样本问题,验证了该方法的路径预测能力。未来,该方法可以应用于解决与液滴相关的各种现实世界的动态运动问题。
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