People | Locations | Statistics |
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Ferrari, A. |
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Schimpf, Christian |
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Dunser, M. |
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Thomas, Eric |
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Gecse, Zoltan |
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Tsrunchev, Peter |
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Della Ricca, Giuseppe |
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Cios, Grzegorz |
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Hohlmann, Marcus |
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Dudarev, A. |
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Mascagna, V. |
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Santimaria, Marco |
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Poudyal, Nabin |
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Piozzi, Antonella |
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Mørtsell, Eva Anne |
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Jin, S. |
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Noel, Cédric |
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Fino, Paolo |
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Mailley, Pascal |
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Meyer, Ernst |
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Zhang, Qi |
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Pfattner, Raphael | Brussels |
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Kooi, Bart J. |
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Babuji, Adara |
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Pauporte, Thierry |
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Edelmann, J.
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (9/9 displayed)
- 2011Determination of adhesive forces and sticking temperature of coated glasses for the hot-embossing-process ; Bestimmung von Haftkräften und Klebetemperatur von beschichteten Gläsern für den Heißprägeprozeßcitations
- 2010Micro structuring of inorganic glass by hot embossing of coated glass waferscitations
- 2009New coating strategy for hot embossing of glass
- 2009Isothermes Heißprägen von beschichteten Glaswafern ; Isothermal hot-embossing of coated glass wafers
- 2008Isothermes Heißprägen von beschichtetem Glas
- 2008Method for the compensation of process-immanent form deviation in hot embossing of glass ; Methode zur Kompensation der prozessimmanenten Gestaltabweichung bei der Heißformgebung von Glas
- 2008High precision laser structuring of micro forming tools ; Hochgenaue Laserstrukturierung von Mikroabformwerkzeugen
- 2006High temperature micro forming of inorganic glass - an effective replication method ; Hochtemperatur Mikroumformung von anorganischem Glas - eine effektive Replikationsmethode
- 2005Investigations of polycrystalline magnetic shape memory alloys ; Untersuchungen zu polykristallinen magnetischen Formgedächtnislegierungen
Places of action
conferencepaper
High precision laser structuring of micro forming tools ; Hochgenaue Laserstrukturierung von Mikroabformwerkzeugen
Abstract
S.49-52 ; Because of the increasing demands for cost-effective and high-precision micro fluidic components the micro hot embossing technology becomes more and more important. An essential element of this technology is the required micro forming tool. The required structural sizes and structure forms as well as the used tool materials limit the application of conventional processes like milling. The structuring with laser offers an alternative method because the material removal with a laser beam allows the manufacturing of very fine structures also in hard and brittle materials. For initial experimental investigations a high strength ceramic material (silicon carbide) was used to produce forming tools for micro fluid components. It succeeded to produce structures with dimensions smaller than 20 µm and in a depth of 200 µm. The evaluation showed very good surface qualities (roughness below RZ 2.55 µm) and a high geometrical accuracy. First replication experiments in PMMA (polymethyl methacrylate) and polycarbonate also show good results and comparable structure qualities.