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首页> 外文期刊>Journal of Applied Polymer Science >Investigation of packaging adhesive properties by molecular dynamics and experiments
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Investigation of packaging adhesive properties by molecular dynamics and experiments

机译:分子动力学和实验调查包装粘合性能

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摘要

Adhesive polymer is a common and important material used for packaging of microelectronics and microsystem by attaching dies onto packaging shell, and its mechanical property plays a vital role in isolating dies from the thermal stress of substrate. Therefore, it is extremely significant to evaluate the polymer property in a specific packaging process. The molecular dynamics (MD) simulation is conducted in this article to investigate the material properties of the cross-linked epoxy resin formed by epoxy resin component diglycidyl ether bisphenol A (DGEBA) and curing agent 1,6-Diaminohexane. The polymer network with conversion up to 87.5% is successfully generated and simulated by constant pressure-constant temperature ensemble (NPT) and canonical ensemble (NVT) at different temperatures of curing process. Glass transition temperature (T-g) and Young's modulus are extracted and the predicted material properties are in great agreement with the experimental data. The conclusion provides a guideline to design the special curing process for different adhesive requirements.
机译:粘接聚合物是微电子和微系统封装中常用的一种重要材料,其力学性能对隔离芯片与基板的热应力起着至关重要的作用。因此,在特定的包装过程中对聚合物的性能进行评估是非常重要的。本文采用分子动力学(MD)模拟方法研究了环氧树脂组分二缩水甘油醚双酚A(DGEBA)与固化剂1,6-二氨基己烷形成的交联环氧树脂的材料性能。成功地生成了转化率高达87.5%的聚合物网络,并在不同固化温度下用恒压恒温系综(NPT)和正则系综(NVT)进行了模拟。提取了玻璃化转变温度(T-g)和杨氏模量,预测的材料性能与实验数据非常一致。该结论为设计不同胶粘剂要求的特殊固化工艺提供了指导。

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