Veröffentlichungen

Wang, W., Riemer, O., Rickens, K., Eppig, T., Baum, A., & Karpuschewski, B. (2026). A novel clamping–cooling system for the off-axis machining of hydrophobic micro-optics. Applied Sciences, 16, 3742. https://doi.org/10.3390/app16083742

Wang, W., Specketer, H., Langenhorst, L., et al. (2026). Chip formation model for orthogonal diamond turning of PMMA using coupled Eulerian–Lagrangian approach. Nanomanufacturing and Metrology, 9, 15. https://doi.org/10.1007/s41871-026-00292-1

Specketer, H., Wang, W., Riemer, O., Rickens, K., & Karpuschewski, B. (2025). Orthogonal cutting of polymer for the validation of material models. In Proceedings of the euspen 25th International Conference & Exhibition (pp. 102–105). ISBN 978-1-998991-6-3

Wang, W., Riemer, O., Rickens, K., Eppig, T., & Karpuschewski, B. (2024). Machinability of hydrophobic acrylic polymer for customized intraocular lenses. In Proceedings of the 9th International Conference on Nanomanufacturing (pp. 100–103)

Wang, W., Riemer, O., Rickens, K., Eppig, T., & Karpuschewski, B. (2024). Off-axis fast-tool-servo diamond turning of customized intraocular lenses from hydrophobic acrylic polymer. In Proceedings of the euspen 24th International Conference & Exhibition (pp. 221–222). ISBN 978-1-998991-5-6

Eppig, T., Rawer, A.-B., Hoffmann, P., Langenbucher, A., & Schröder, S. (2020). On the chromatic dispersion of hydrophobic and hydrophilic intraocular lenses. Optometry and Vision Science, 97(4), 305–313. https://doi.org/10.1097/OPX.0000000000001495

Eppig, T., Schrecker, J., Messner, A., & Langenbucher, A. (2020). Aberration correction with aspheric intraocular lenses. Intraocular Lens. https://doi.org/10.5772/intechopen.89361

Meier, A., Riemer, O., & Brinksmeier, E. (2016). Diamond machining of holograms using fine rectangular shaped cutting tools. Materials Science, 10, 16–22. https://doi.org/10.20965/jat.2016.p0016

Boinski, A. K., Riemer, O., Karpuschewski, B., Schneider, M., Guttmann, M., & Vogt, W. (2022). Fast tool machining and hot embossing for the manufacture of diffractive structured surfaces. Precision Engineering, 74, 12–19. https://doi.org/10.1016/j.precisioneng.2021.10.002