Tom Häfner


Lehrstuhl für Photonische Technologien

Publications (Download BibTeX)

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Häfner, T., Rothammer, B., Tenner, J., Krachenfels, K., Merklein, M., Tremmel, S.,... Schmidt, M. (2018). Adaption of tribological behavior of a-C:H coatings for application in dry deep drawing. MATEC Web of Conferences, 190, 1 - 10.
Heberle, J., Häfner, T., & Schmidt, M. (2018). Efficient and damage-free ultrashort pulsed laser cutting of polymer intraocular lens implants. CIRP Annals - Manufacturing Technology, 67(1), 197-200.
Tenner, J., Häfner, T., Rothammer, B., Krachenfels, K., Zhao, R., Schmidt, M.,... Merklein, M. (2018). Influence of laser generated micro textured coated tool surfaces on dry deep drawing processes. Dry Metal Forming Open Access Journal, 4, 35 - 46.
Häfner, T., Strauß, J., Roider, C., Heberle, J., & Schmidt, M. (2018). Tailored laser beam shaping for efficient and accurate microstructuring. Applied Physics A: Materials Science and Processing, 124(111).
Tenner, J., Häfner, T., Zhao, R., Andreas, K., Schmidt, M., Tremmel, S., & Merklein, M. (2017). Analysis of tool-sided surface modifications for dry deep drawing of deep drawing steel and aluminum alloys in a model process. Dry Metal Forming Open Access Journal, 3, 30-40.
Häfner, T., Heberle, J., Hautmann, H., Zhao, R., Tenner, J., Tremmel, S.,... Schmidt, M. (2017). Effect of picosecond laser based modifications of amorphous carbon coatings on lubricant-free tribological systems. Journal of Laser Micro Nanoengineering, 12(2), 132-140.
Heberle, J., Knoll, M., Häfner, T., & Schmidt, M. (2017). High-speed pump-probe imaging of ultrashort pulsed laser cutting of polymers. Journal of Laser Applications, 29(2).
Häfner, T., Heberle, J., Holder, D., & Schmidt, M. (2017). Speckle reduction techniques in holographic beam shaping for accurate and efficient picosecond laser structuring. Journal of Laser Applications, 29, 022205.
Strauß, J., Häfner, T., Dobler, M., Heberle, J., & Schmidt, M. (2016). Evaluation and Calibration of LCoS SLM for Direct Laser Structuring with Tailored Intensity Distributions. Physics Procedia, 83, 1160-1169.
Chen, C., Ahmed, M., Häfner, T., Klämpfl, F., Stelzle, F., & Schmidt, M. (2016). Fabrication of a turbid optofluidic phantom device with tunable µa and μ s’ to simulate cutaneous vascular perfusion. Scientific Reports.

Last updated on 2016-05-05 at 05:03

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