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Dive into the research topics where Wilfried Behr is active.

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Featured researches published by Wilfried Behr.


Journal of Laser Applications | 2007

Welding of titanium and other refractory metals with a free pulse shaping laser

Karsten Richter; Uwe Reisgen; Wilfried Behr; Ronald Holtz

Refractory metals are used as construction materials for specific applications. Amongst the refractory metals, titanium has a special status due to its multi-faceted property profile and its comparatively low price. Titanium materials have outstanding properties, such as excellent resistance to corrosion and very high strength at low densities, which lead to their preferred use in chemical engineering and as a structural material in lightweight construction. Due to the high affinity of titanium for atmospheric gases at temperatures above 500 °C, titanium components are joined under sophisticated inert gas shielding by TIG welding or in a vacuum by an electron beam. A novel, innovative laser beam welding process with a pulsed Nd:YAG laser with free pulse shaping will be presented, which produces oxidation-free weld seams with very good mechanical-technological properties in refractory metals without the use of expensive inert gas shielding (e.g., dragging nozzles). This welding process offers technological and economic advantages over processes used up until now for machining complex components and for series production.Refractory metals are used as construction materials for specific applications. Amongst the refractory metals, titanium has a special status due to its multi-faceted property profile and its comparatively low price. Titanium materials have outstanding properties, such as excellent resistance to corrosion and very high strength at low densities, which lead to their preferred use in chemical engineering and as a structural material in lightweight construction. Due to the high affinity of titanium for atmospheric gases at temperatures above 500 °C, titanium components are joined under sophisticated inert gas shielding by TIG welding or in a vacuum by an electron beam. A novel, innovative laser beam welding process with a pulsed Nd:YAG laser with free pulse shaping will be presented, which produces oxidation-free weld seams with very good mechanical-technological properties in refractory metals without the use of expensive inert gas shielding (e.g., dragging nozzles). This welding process offers technological...


Materialwissenschaft Und Werkstofftechnik | 2007

Low Heat Welding of Titanium Materials with a Pulsed Nd:YAG Laser

K. Richter; Wilfried Behr; Uwe Reisgen


Fusion Engineering and Design | 2015

Design overview of the ITER core CXRS fast shutter and manufacturing implications during the detailed design work

David Antonio Castaño Bardawil; Philippe Mertens; G. Offermanns; Wilfried Behr; Nick Hawkes; Yury Krasikov; I. Balboa; W. Biel; U. Samm


Archive | 2011

Verfahren zur stoffschlüssigen verbindung eines bauteils aus titanaluminid mit einem bauteil aus einem artfremden metall sowie stoffschlüssige verbindung

Wilfried Behr


Physics Procedia | 2010

Development of a laser-based glass sealing joining process for the fuel cell manufacturing

Dietrich Faidel; Wilfried Behr; S. Groß; Uwe Reisgen


Materialwissenschaft Und Werkstofftechnik | 2010

Glass sealing materials and laser joining process development for fuel cell stack manufacturing

D. Faidel; Wilfried Behr; S. Groß; Uwe Reisgen


Archive | 2012

Method for protecting the surface of an optical component and device for processing work pieces

Wilfried Behr; Stefan Jakobs; Simon Olschok; Uwe Reisgen; Stefan Longerich


Archive | 2011

Method of joining of metallic and/or ceramic materials with the help of a glass ceramic filler material

Dietrich Faidel; Wilfried Behr; Uwe Reisgen


Journal of manufacturing technology | 2018

Ultrasonic Testing of Diffusion Bonded Joints of AlMg3

Pavel Nachtnebl; Lucie Forejtová; Ladislav Kolařík; Wilfried Behr; Uwe Reisgen


Archive | 2015

Entwicklung und Test von Prototypkomponenten für ITER

W. Biel; Anatoli Panin; O. Neubauer; Philippe Mertens; N. Gierse; G. Offermanns; Michael Schrader; O. Marchuk; B. Unterberg; Wilfried Behr; A. Litnovsky; Sebastian Friese; David Castano-Bardawil; Bernd Schweer; Gennadi Sergienko; Andreas Krimmer; G. Czymek; Yuri Krasikov; M. Lehnen; Alexander Huber; Hans-Rudolf Koslowski

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Uwe Reisgen

Forschungszentrum Jülich

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Dietrich Faidel

Forschungszentrum Jülich

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G. Offermanns

Forschungszentrum Jülich

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S. Groß

Forschungszentrum Jülich

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W. Biel

Forschungszentrum Jülich

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A. Litnovsky

Forschungszentrum Jülich

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Alexander Huber

Forschungszentrum Jülich

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