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Magnetron-Sputtered Nanolaminate Coatings

机译:磁控溅射纳米复合涂层

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Thin film nanolaminate materials can exhibit physical, optical and mechanical properties very different and superior to those of single layer counterparts. In the past fifteen years, hard coating, optical and electrical device technologies have advanced beyond the use of single layer coatings with the development of nanoscale compositional ly modulated coatings, or superlattices, nanolaminates and nanocomposites. Atypical nanolaminate consists of hundreds to thousands of nm-scale layers with alternating compositions and/or crystalline phases. Itispossibletoengineertheelectrical and mechanical properties by choice of layer thicknesses and compositions. Typical layer thicknesses are between 2 and 100 nm. We report of three types of nanolaminate coatings: (1) aluminum nitride/silicon nitride optical superlattice for abrasion protection of optical windows and aluminum/copper structural nanolaminates using a roll-to-roll process. All nanolaminate coatings were deposited by DC and RF reactive magnetron sputtering. The aluminum nitride/silicon nitride nanolaminate had layerthick-nesses of 2 nm and exhibited a nanohardness of 35 Gpa. The aluminum/copper nanolaminate had layer thicknesses of 1.5 nm and a hardness near 6.5 Gpa and is being developed for lightweight optics for space applications.
机译:薄膜纳米层压材料可以表现出非常不同的物理,光学和机械性能,并且优于单层对应材料。在过去的十五年中,随着纳米级成分调制涂层或超晶格,纳米层压板和纳米复合材料的发展,硬涂层,光学和电气设备技术已经超越了单层涂层的使用范围。非典型纳米层合物由数百至数千个纳米级的层组成,具有交替的组成和/或结晶相。通过选择层的厚度和成分来设计电气和机械性能是可行的。典型的层厚度在2至100nm之间。我们报告了三种类型的纳米层压涂层:(1)氮化铝/氮化硅光学超晶格,用于光学窗玻璃和铝/铜结构纳米层压板的抗磨保护,采用卷对卷工艺。通过DC和RF反应磁控溅射沉积所有纳米层压体涂层。氮化铝/氮化硅纳米层压体的层厚度为2nm,并且表现出35Gpa的纳米硬度。铝/铜纳米层压板的厚度为1.5 nm,硬度接近6.5 Gpa,目前正在开发用于太空应用的轻型光学器件。

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