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ADHESIVE TIECOAT / POLYIMIDE INTERACTIONS IN HIGH TEMPERATURE FLEX PACKAGING

机译:粘合剂杆/聚酰亚胺相互作用在高温柔性包装中

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The high temperature reliability of flex-based Cu/tiecoat/polyimide structures was evaluated through finite element simulation and experimental approach. This study is part of an effort to characterize and optimize polyimide flex as a substrate material for electronics packages rated to greater than 204°C. The peel strength of several common adhesion metals (Ti, Cr, Ni, Cu) on Kapton E was quantified at room temperature and after high temperature storage in inert and highly oxidizing environments. These results were used in tandem with thermal-mechanical simulations to characterize the behavior of several tiecoat materials. Experimental results showed diminished peel strengths of both the Ti and Cr after a 100-hour 250°C heat treatment in air. However when annealed in an inert N_2 environment at 250°C for 100 hours, Cr, Ni, and Ti retained their as-sputtered peel strength. Ni and Cu exhibited lower mechanical stresses in the simulation; however, their relatively low reactivity limits their adhesion strength at the interface in oxidizing environments. To further understand the origin of the thermal-mechanical stress, the effect of mismatched CTE was compared to mismatched elastic modulus. Both properties were found to contribute to stress generation; however elastic modulus mismatches had a much greater influence on the overall magnitude of the stress. Through experimentation and FEA analysis this study aims to develop a flexed-based high temperature packaging solution and to shed light onto high temperature tiecoat/polyimide interactions.
机译:通过有限元模拟和实验方法评估柔性的Cu / TiCoOD /聚酰亚胺结构的高温可靠性。该研究是努力表征和优化聚酰亚胺柔性作为额定电以大于204°C的电子包装的基板材料的一部分。在室温和高温储存的惰性和高氧化环境中,在Kapton E上定量了几种常见粘附金属(Ti,Cr,Ni,Cu)的剥离强度。这些结果与热电机模拟的串联使用,以表征几种杆状材料的行为。实验结果显示在空气中100小时250℃的热处理后Ti和Cr的剥离强度降低。然而,当在250℃下在惰性N_2环境中退火100小时时,Cr,Ni和Ti保留它们的溅射剥离强度。 Ni和Cu在模拟中表现出较低的机械应力;然而,它们的相对低的反应性限制了它们在氧化环境中的界面处的粘合强度。为了进一步了解热机械应力的来源,将错配CTE的效果与错配的弹性模量进行比较。发现这两种性质有助于产生压力;然而,弹性模量错配对应力的总大小有更多的影响。通过实验和FEA分析本研究旨在开发基于屈曲的高温包装溶液并脱落到高温杆/聚酰亚胺相互作用上。

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