Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Bernd Fehrmann is active.

Publication


Featured researches published by Bernd Fehrmann.


Volume 4: Cycle Innovations; Electric Power; Industrial and Cogeneration; Manufacturing Materials and Metallurgy | 2006

Automated Laser Re-Opening of Film Cooling Holes

Matthias Hoebel; Bernd Fehrmann; Karsten Franitza; Christoph Kohles; P. Lang

The re-opening of film cooling holes is currently one of the major challenges for the commercial repair of latest generation gas turbine noble parts. Protective coatings consumed in the course of a C-Interval must be replaced. An undesired side effect is that the new coating material plugs existing cooling channels. The use of reconditioned parts critically depends upon the capability to restore the original efficiency of the advanced cooling system. We present a novel process for that purpose, which has been developed at the ALSTOM Technology Center combining robotic vision and laser material processing. As a first step accurate information about cooling hole positions and orientation is obtained from a robotic vision system. This data is used to guide a short-pulse drilling laser in a subsequent machining operation. Typical overspray conditions for a great variety of film cooling geometries have been simulated and the results have been used to create a database of 3D overspray models. From these models a CAD/CAM postprocessor automatically generates individualized laser machining programs. Overspray coating material is then removed through an ablation process using a tailored 5+2 axes laser machining center equipped with an industrial q-switch Nd-YAG laser and a galvano-scanner. Airflow measurement results show that the new process is capable of meeting the cooling airflow requirements for heavily loaded hot-gas parts of the first gas turbine stage. This allows high quality reconditioning of film-cooled gas turbine components such as those in ALSTOM’s GT24/GT26 fleet.© 2006 ASME


Archive | 2003

Method of controlled remelting of or laser metal forming on the surface of an article

Matthias Hoebel; Bernd Fehrmann


Archive | 2009

Hot Gas Component of a Turbomachine Including an Embedded Channel

Cyrille Bezencon; Bernd Fehrmann; Matthias Hoebel; Maxim Konter; Wilfried Kurz; Jean-Daniel Wagnière


Archive | 2007

Method of producing a hot gas component of a turbomachine including an embedded channel

Cyrille Bezencon; Bernd Fehrmann; Matthias Hoebel; Maxim Konter; Wilfried Kurz; Jean-Daniel Wagnière


Archive | 2007

Method of processing turbine components

Matthias Hoebel; Bernd Fehrmann; Christoph Kohles; Karsten Franitza


Archive | 2005

Component comprising an embedded channel, in particular a hot gas component of a turbomachine

Cyrille Bezencon; Bernd Fehrmann; Matthias Hoebel; Maxim Konter; Wilfrid Kurz; Jean-daniel Wagniére


Archive | 2003

Adaptive automatisierte Bearbeitung von überfüllten Kanälen

Andreas Boegli; Bernd Fehrmann; Matthias Hoebel


Archive | 2007

Verfahren zur Laserentfernung von Beschichtmaterialen in Kühllöchern eines Turbinenbauteiles A method for laser removal of Beschichtmaterialen in cooling holes of a turbine component

Matthias Hoebel; Bernd Fehrmann; Christoph Kohles; Karsten Franitza


Archive | 2007

The method for laser removal of Beschichtmaterialen cooling holes in a turbine component

Matthias Hoebel; Bernd Fehrmann; Christoph Kohles; Karsten Franitza


Archive | 2006

Messvorrichtung measuring device

Karsten Franitza; Bernd Fehrmann; Matthias Hoebel; Peter Lang

Collaboration


Dive into the Bernd Fehrmann's collaboration.

Researchain Logo
Decentralizing Knowledge