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Advanced Characterization Techniques for Turbine Blade Wear and Damage

Jochen Schlobohm, Oliver Bruchwald, Wojciech Frąckowiak, Yinan Li, Markus Kästner, Andreas Pösch, W. Reimche, Hans Jürgen Maier, Eduard Reithmeier

Year
2017
Citations
18

Abstract

This paper presents four complementary non-destructive measurement techniques for material characterization and damage detection of turbine blades. The techniques are macroscopic fringe projection with inverse fringe projection algorithms, robot guided microscale fringe projection, high frequency eddy current and pulsed high frequency induction thermography, both in the megahertz range. The specimen on which the measurements were carried out is a blade of the 1st stage high pressure turbine of a modern airplane jet engine. The turbine blade was characterized with regard to the macroscopic and microscopic geometry, cracks in the base material as well as the condition of the protective layer system.

Keywords

Turbine bladeMicroscale chemistryCharacterization (materials science)Blade (archaeology)ThermographyNondestructive testingTurbineProjection (relational algebra)AirplaneJet engine

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