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Combined TEM and XPS studies of metal - polymer interfaces for space applications

机译:空间应用金属聚合物界面的组合TEM和XPS研究

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AbstractThe stability of metal-polymer interfaces after extreme thermal cycling is essential for high-performance thermal insulation of satellites. The Aluminium-Polyimide (Al-PI) system investigated here is used as a multilayer insulator for satellites currently in low earth orbit. Its interfacial adhesion should be resistant to thermal loading caused by the sun during orbit. In this study, transmission electron microscopy (TEM) is combined with X-ray photoelectron spectroscopy (XPS) to relate the interface structure and chemistry to the mechanical strength of the Al-PI interface as a function of thermal cycling. Results show that the interfacial properties of Al-PI remain unaffected by thermal cycling of ±150°C in gaseous nitrogen up to 200 thermal cycles. TEM cross-sections were used to examine the interface structure and revealed a 3.6nm, amorphous interlayer between Al and PI for as deposited and cycled samples. XPS survey scans and relevant high resolution core levels were recorded on both sides of the interface to identify and understand relevant interfacial bonding as well as to distinguish between adhesive failure at the interface and cohesive failure in the polyimide substrate. The Al-PI system presented in this study can serve as a model for strong and thermally resistant metal-polymer interfaces. The combination of interface strength, structure and chemistry allows for an improved understanding of how thermal treatments can influence interfacial behaviour between metals and polymers and will help improve design and reliability of materials used in space as well as terrestrial applications.展开▼
机译:<![CDATA [ 抽象 金属 - 聚合物界面极端热循环后的稳定性对于卫星的高性能的绝热必需的。铝 - 聚酰亚胺(铝-PI)系统研究了这里被用作在低地球轨道卫星的当前的多层绝缘体。它的界面粘接应该是轨道期间因日晒引起的热负荷性。在这项研究中,透射电子显微镜(TEM)用X射线光电子能谱(XPS)的接口结构和化学涉及到将Al-PI接口作为热循环的函数的机械强度相结合。结果表明,铝-PI的界面性质在气态氮不受影响由±150℃的热循环达200次热循环。 TEM横截面被用来检查界面结构和揭示了3.6nm,Al和PI之间的无定形层间用于沉积和循环样本。 XPS测量扫描和相关的高分辨率核心水平记录在接口确定和了解有关界面粘合以及在界面处的聚酰亚胺基板粘合失效与内聚失效之间进行区分的两侧。在本研究中提出的的Al-PI系统可以作为强和耐热金属 - 聚合物界面的模型。界面强度,结构和化学性质的组合允许的热处理可以如何影响金属和聚合物之间的界面的行为和有利于提高在使用空间以及地面应用的材料设计和可靠性的改进的理解

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