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Kunststoffe international 2017/01-02

Thermally Conductive Polymers Meet LED

Simple Simulation Techniques Enable the Reliable Design of a Plastic Heat Sink

Thermally Conductive Polymers Meet LED

By adapting the modular concept, thermally conductive polymers can be used to effectively remove heat from electronic components, even from complex, high-power LED systems. Configuration requires a systematic procedure that in part utilizes simulating tools.

Prof. Dr.-Ing. Dietmar Drummer; Andreas Fischer, M.Sc.,; Dipl.-Wirtsch.-Ing Florian Ranft; Dr.-Ing. Christoph Heinle; Dr.-Ing. Simon Amesöder; Andreas Lober, B.Eng.,

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Literature

1 Heinle, C. et al.: Innovative konstruktive und fertigungstechnische Möglichkeiten zur Kühlung von LEDs mit wärmeleitfähigen Kunststoffen. 3rd Symposium Connectors, Lemgo 2011, pp. 174-195

2 Kruber, D.: Better Heat Conduction. Kunststoffe international 104 (2014) 6, pp. 66-69

3 Posca, L.: LED-Kühlkörper wirtschaftlich herstellen. Kunststoffe 97 (2007) 5, pp. 102-105

4 3-D MID e.V. (Hrsg.): 3D-MID Technologie – Räumliche elektronische Baugruppen – Herstellungsverfahren, Gebrauchsanforderungen, Materialkennwerte. Carl Hanser Verlag, Munich, Germany, 2004

5 Stampfer, S.: Heißprägen von spritzgegossenen Schaltungsträgern. Dissertation; Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany 1999

6 Heinle, C.: Simulationsgestützte Entwicklung von Bauteilen aus wärmeleitfähigen Kunststoffen. Dissertation; Friedrich-Alexander-Universität, Erlangen-Nürnberg, Germany, 2012

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International Polymer Processing

International Polymer Processing, the journal of the Polymer Processing Society, is a discussion forum for the world-wide community of engineers and scientists in the field of polymer processing.

The journal covers research and industrial application in the very specific areas of designing polymer products, processes, processing machinery and equipment.


International Polymer Processing


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