Roeder Marcel, Guenther Thomas, Zimmermann André
Hahn-Schickard, Allmandring 9b, 70569 Stuttgart, Germany.
University of Stuttgart, Institute for Micro Integration (IFM), Allmandring 9 b, 70569 Stuttgart, Germany.
Micromachines (Basel). 2019 Apr 3;10(4):233. doi: 10.3390/mi10040233.
Polymer optics have gained increasing importance in recent years. With advancing requirements for the optical components, the fabrication process remains a challenge. In particular, the fabrication of the mold inserts for the replication process is crucial for obtaining high-quality optical components. This review focuses on fabrication technologies for optical mold inserts. Thereby, two main types of technologies can be distinguished: fabrication methods to create mold inserts with optical surface quality and methods to create optical microstructures. Since optical mold inserts usually require outstanding form accuracies and surface qualities, a focus is placed on these factors. This review aims to give an overview of available methods as well as support the selection process when a fabrication technology is needed for a defined application. Furthermore, references are given to detailed descriptions of each technology if a deeper understanding of the processes is required.
近年来,聚合物光学器件的重要性日益凸显。随着对光学元件要求的不断提高,制造工艺仍然是一项挑战。特别是,用于复制工艺的模具镶件的制造对于获得高质量光学元件至关重要。本综述聚焦于光学模具镶件的制造技术。由此,可以区分出两种主要类型的技术:制造具有光学表面质量的模具镶件的方法以及制造光学微结构的方法。由于光学模具镶件通常需要出色的形状精度和表面质量,因此重点关注这些因素。本综述旨在概述可用方法,并在特定应用需要制造技术时支持选择过程。此外,如果需要对工艺有更深入的了解,还会提供每种技术详细描述的参考文献。