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An energy-based failure criterion for delamination initiation in electronic packaging

机译:电子包装中分层引发的基于能量的失效准则

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摘要

The significance of interfacial delamination as a crucial failure mechanism in electronic packaging has been documented in many papers.A number of failure criteria have been used to solve the problems with a pre-crack at the interface.However,in real electronic packages,the size and location of the cracks or/and delamination cannot be predicted.It is not easy to use the traditional fracture criteria to deal with more complicated 3D delamination problems.The epoxy molding compound (EMC)/copper leadframe interface was selected in this study.A series of button shear tests were conducted to evaluate the interfacial adhesion between the EMC and copper.In each test,the failure load acting on the EMC of the button shear sample was measured at different shear angles and a finite element model was used to evaluate the stresses at the EMC/copper interface.In this paper,an energy-based failure criterion is proposed using both the interfacial distortional and hydrostatic strain energy densities as two failure parameters.Stresses were extracted from the numerical simulation in order to calculate the interfacial distortional strain energy density,U_d,and the interfacial hydrostatic strain energy density,U_h related,respectively,to the shear and tensile modes.U_d and U_h were averaged within a selected region of the finite element model where it exhibits high interfacial strain energy density values.
机译:界面分层是电子包装中至关重要的失效机制的重要性,许多论文已经进行了证明。许多失效准则已被用来解决界面处的预裂纹问题。但是,在实际的电子包装中,尺寸裂纹和/或分层的位置和位置无法预测。使用传统的断裂准则来解决更复杂的3D分层问题并不容易。本研究选择了环氧模塑化合物(EMC)/铜引线框架界面。进行了一系列的纽扣剪切试验,以评估EMC与铜之间的界面粘附力。在每个试验中,均测量了在不同剪切角下作用于纽扣剪切样品的EMC的破坏载荷,并使用了有限元模型来评估本文提出了一种基于界面变形和静水应变能密度的能量准则。两个破坏参数。从数值模拟中提取应力,以计算界面应变应变能密度U_d和界面静水应变能密度U_h分别与剪切和拉伸模式有关。U_d和U_h取平均值有限元模型的选定区域,其中显示出较高的界面应变能密度值。

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