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SurfaceTechnology GERMANY, 05 - 07 June 2018
Homepage>Exhibitors & Products >Laure Plasmatechnologie

Laure Plasmatechnologie

Customized plasma coating and plasma surface-treatment

Logo Laure Plasmatechnologie

Company Data

Dr. Laure Plasmatechnologie GmbH

Schwanenstr. 12
70329 Stuttgart
Germany
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Fax: +49 711 420 4829

Contact(s)

Mr. Dr.-Ing. Stefan Laure
Managing Director
Send E-mail
Fax: +49 711 4204829
Ms. Ann-Kathrin Laure
Send E-mail
Fax: +49 711 4204829
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Facts

Type of company
Manufacturer

Year founded
1999

No. of employees
1-10 (Status: 2015)

Company profile

Plasmatechnologie GmbH develops plasma coating and surface treatment procedures and builds the systems necessary for applying them on an industrial scale. Our technology is based on the idea of using energy-rich plasma for industrial purposes, much the same way it is used to simulate the re-entry of spacecraft into Earth's atmosphere.

One exceptional aspect of these coating processes is the quick formation of high-quality layers it enables. This makes it possible to coat large components quickly and cost-effectively in great numbers.

We find the right solutions - even for coating and surface treatment of large components with complex geometries ranging from glass tubes to shaped sheet metal and entire vehicle bodies. .

Company website

Products

Refractory metal coating

With it's unique electric arc-induced plasma coating technlology, Dr. Laure Plasmatechnologie GmbH can coat various components with layers of refractory metals like tungsten, tantalum or molybdenum. These metals have a high melting point between 1700 °C and 3422 °C and are mechanically and chemically ...read more

Antireflex-Beschichtungen

Wirkungsgrad-Steigerung bei solarer Energiegewinnungread more

R&D-Project

Silicon made of sand

Solar cells make it possible to make use of the sun as a virtually inexhaustible source of energy to produce electrical energy. The huge amounts of energy required and the large quantities of pollutants emitted in the production of solar cells out of crystalline silicon using today's state-of-the-art ...read more

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