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An examination on the direct concentration approach to simulating moisture diffusion in a multi-material system

机译:在多材料系统中模拟水分扩散的直接浓缩方法研究

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摘要

In 2009, Xie et al. proposed a diffusion simulation method called direct concentration approach (DCA), which aimed at solving moisture diffusion problems in electronic packages under a transient temperature environment such as reflow process ("Direct Concentration Approach of Moisture Diffusion and Whole Field Vapor Pressure Modeling for Reflow Process: Part I - Theory and Numerical Implementation," ASME J. Electron. Packag., 131, p. 031,010). However, our study shows that although the DCA may give reasonably accurate concentration results under several circumstances, its relative error in concentration result can be as high as 10% in one of our test cases. More importantly, the DCA generally leads to the discontinuity of diffusion flux at the bi-material interface, which means that the result may violate the law of mass conservation. A theoretical derivation based on a one-dimensional (1-D) diffusion case is presented to demonstrate the flaw of the DCA using the finite element formulation. (C) 2016 Published by Elsevier Ltd.
机译:2009年,谢等人。提出了一种称为直接浓缩法(DCA)的扩散模拟方法,旨在解决瞬态温度环境(例如回流工艺)下电子封装中的水分扩散问题(“回流过程的水分扩散和全场蒸汽压直接浓缩方法:第一部分-理论和数值实现,” ASME J.电子包装,第131页,第031,010页。但是,我们的研究表明,尽管DCA在某些情况下可以给出合理准确的浓缩结果,但在我们的一个测试案例中,其浓缩结果的相对误差可能高达10%。更重要的是,DCA通常会导致双材料界面处扩散通量的不连续,这意味着结果可能违反质量守恒定律。提出了基于一维(1-D)扩散情况的理论推导,以证明使用有限元公式的DCA缺陷。 (C)2016由Elsevier Ltd.出版

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