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Precision glass molding — An integrative approach for the production of high precision micro optics

机译:精密玻璃模塑 - 一种高精度微光学生产的一体化方法

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Miniaturization and integration are the dominating factors for the success of numerous optical devices. Conventional manufacturing processes for the fabrication of precise glass optics by means of grinding and polishing cannot cope the increasing demands in terms of precision, volume and costs. Here, precision glass molding is the enabling technology to meet these demands of the future optical products and applications. Since the market requests further miniaturization and integration of the micro optical components the possession of the entire sequence of processes is absolutely essential. With the accomplished and ongoing developments at the Fraunhofer IPT, the replication of double-sided (a)spherical and (a)cylindrical glass lenses with form accuracies of < 150 nm as well as lens arrays and even freeform optics could be realized. Therefore, a sequence of processes needs to be passed. The FEM-simulation of the molding process which was driven to a point capable to simulate even the molding of freeform optics is the first process step. Further on, new mold design concepts were generated to enable the replication of free formed optics. The research works focusing on the mold manufacturing led to sophisticated grinding process strategies able to realized complex mold geometries such as lens arrays. With regard to the coating of the molds, proceedings were developed assuring a defect free and uniform coating which enables the longevity of the molds and therewith helps reducing the final costs per lens. Thus, the precision glass molding becomes more and more interesting even for highly complex mid volume lots, characteristic for European or US optics manufacturer.
机译:小型化和整合是众多光学器件成功的主导因素。通过研磨和抛光制造精确玻璃光学器件的常规制造方法不能应对精度,体积和成本方面的越来越大。在这里,精密玻璃模塑是满足未来光学产品和应用的这些需求的能力技术。由于市场要求进一步小型化和整合微型光学元件,因此整个过程的拥有绝对必要。通过Fraunhofer IPT的完成和持续发展,可以实现双面(a)球形和(a)圆柱形玻璃透镜的复制,其具有<150nm的精度<150nm以及透镜阵列,甚至是自由形式光学器件。因此,需要通过一系列过程。将模塑过程的FEM模拟被驱动到能够模拟的点,即使是自由形式光学器件的成型也是第一工艺步骤。此外,生成新的模具设计概念,以实现自由形成的光学器件的复制。专注于模具制造的研究工作导致了能够实现诸如镜头阵列的复杂模板几何形状的复杂的研磨工艺策略。关于模具的涂层,开发了可缺陷和均匀的涂层,这使得能够使模具的寿命能够有助于降低每透镜的最终成本。因此,即使对于高度复杂的中间体积批量,精密玻璃模塑也变得越来越有趣,欧洲或美国光学制造商的特征。

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