Consequences of Borescope Blending Repairs on Modern High Pressure Compressor Blisk Aeroelasticity

Author:

Hanschke Benjamin1,Kühhorn Arnold2,Schrape Sven3,Giersch Thomas3

Affiliation:

1. Chair of Structural Mechanics and Vehicle Vibration Technology, Brandenburg University of Technology Cottbus-Senftenberg, Cottbus D-03046, Germany e-mail:

2. Chair of Structural Mechanics and Vehicle Vibration Technology, Brandenburg University of Technology Cottbus-Senftenberg, Cottbus D-03046, Germany

3. Rolls-Royce Deutschland Ltd & Co KG, Blankenfelde-Mahlow D-15827, Germany

Abstract

Objective of this paper is to analyze the consequences of borescope blending repairs on the aeroelastic behavior of a modern high pressure compressor (HPC) blisk. To investigate the blending consequences in terms of aerodynamic damping and forcing changes, a generic blending of a rotor blade is modeled. Steady-state flow parameters like total pressure ratio, polytropic efficiency, and the loss coefficient are compared. Furthermore, aerodynamic damping is computed utilizing the aerodynamic influence coefficient (AIC) approach for both geometries. Results are confirmed by single passage flutter (SPF) simulations for specific interblade phase angles (IBPA) of interest. Finally, a unidirectional forced response analysis for the nominal and the blended rotor is conducted to determine the aerodynamic force exciting the blade motion. The frequency content as well as the forcing amplitudes is obtained from Fourier transformation of the forcing signal. As a result of the present analysis, the change of the blade vibration amplitude is computed.

Funder

European Regional Development Fund

Publisher

ASME International

Subject

Mechanical Engineering

Reference16 articles.

1. A Method of Inspecting and/or Repairing Component and a Device for Inspecting and/or Repairing a Component,2013

2. Adair, T. L., Owens, J. L., Grady, G., Winter, H. I., and Grant, R. C., 1998, “Blending Borescope Inspection (BBI) Maintenance Service Equates to Cost Savings,” AUTOTESTCON IEEE Systems Readiness Technology Conference, Salt Lake City, UT, Aug. 25–27, pp. 486–493.10.1109/AUTEST.1998.713489

3. Models for Blisks With Large Blends and Small Mistuning;Mech. Syst. Signal Process.,2017

4. Effects of Mistuning Patterns on Forced Response for an Integrally Bladed Disk,2015

5. Parametric Blending and FE-Optimisation of a Compressor Blisk Test Case;Greiner,2014

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