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Evaluating the use of self-assembled monolayer (SAM) release coatings for replicated optics

机译:评估自组装单层(SAM)防粘涂层在复制光学器件中的使用

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摘要

Carbon fiber-reinforced composite replicated mirrors offer weight savings, higher stiffness, tailorable CTEs, higher thermal conductivities, and excellent damage tolerant mechanical properties in comparison to traditionally processed glass mirrors. These mirrors can also be rapidly manufactured by replicating the surface of a high-precision glass mandrel multiple times. The mold release coating used is critical and must be on the molecular scale, uniform, and exhibit low adhesion in order to produce high-fidelity replication. This study investigates the use of a self-assembled monolayer (SAM) as the mold release agent for the manufacture of replicated mirrors. We have synthesized and tested perfluoropolyether (PFPE) coatings formed on glass substrate via self-assembly. Ellipsometry, X-ray photoelectron spectroscopy, and atomic force microscopy were used to characterize the morphology, thickness uniformity and the chemical profile of the coatings. The release force necessary to remove the replicated surfaces from the mandrel is critical and was directly related to the surface distortion of the replica. The release force increased with each successive replication due to pinholes and defects. Incorporating a secondary, lower molecular weight SAM reagent significantly reduced both surface agglomeration and transfer of SAM material to the replicated resin surface. A 60% reduction in the replica release force and a 50% improvement in the replica surface figure were achieved due to reductions in the defect density of the SAM coating.
机译:与传统加工的玻璃镜相比,碳纤维增强的复合镜可减轻重量,提高刚度,可定制的CTE,提高热导率并具有出色的抗损伤机械性能。通过多次复制高精度玻璃心轴的表面,也可以快速制造这些镜子。所使用的脱模涂层非常关键,并且必须在分子尺度上保持均匀,显示低粘附力才能产生高保真复制效果。这项研究调查了使用自组装单层(SAM)作为制造复制镜的脱模剂。我们已经合成并测试了通过自组装在玻璃基板上形成的全氟聚醚(PFPE)涂层。椭偏仪,X射线光电子能谱和原子力显微镜用于表征涂层的形貌,厚度均匀性和化学分布。从心轴上去除复制的表面所需的释放力至关重要,并且与复制品的表面变形直接相关。由于针孔和缺陷,释放力随着每次连续复制而增加。掺入较低分子量的次级SAM试剂可显着降低表面结块和SAM材料向复制的树脂表面的转移。由于SAM涂层缺陷密度的降低,复制品释放力降低了60%,复制品表面图形提高了50%。

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