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Faculté des Sciences appliquées
Faculté des Sciences appliquées
MASTER THESIS
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Mistuning identification in a mono-stage bladed disk using an Inverse CMM method

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Pecoraro, Silvano ULiège
Promotor(s) : Golinval, Jean-Claude ULiège
Date of defense : 26-Jun-2017/27-Jun-2017 • Permalink : http://hdl.handle.net/2268.2/2518
Details
Title : Mistuning identification in a mono-stage bladed disk using an Inverse CMM method
Translated title : [fr] Identification du désaccordage dans un disque aubagé mono-étage à l'aide d'une méthode CMM inverse
Author : Pecoraro, Silvano ULiège
Date of defense  : 26-Jun-2017/27-Jun-2017
Advisor(s) : Golinval, Jean-Claude ULiège
Committee's member(s) : Dimitriadis, Grigorios ULiège
Bertha, Mathieu ULiège
De Cazenove, Jean 
Language : English
Number of pages : 84
Discipline(s) : Engineering, computing & technology > Aerospace & aeronautics engineering
Engineering, computing & technology > Mechanical engineering
Institution(s) : Université de Liège, Liège, Belgique
Degree: Master en ingénieur civil en aérospatiale, à finalité spécialisée en "aerospace engineering"
Faculty: Master thesis of the Faculté des Sciences appliquées

Abstract

[en] Bladed disks (or blisks) used in jet engines' axial compressors are supposed to be cyclically symmetric. But some unavoidable deviations from blade to blade (called mistuning) due to manufacturing tolerances, the presence of defects or operational wear break the cyclic symmetry of blisks. It results in considerable changes in the dynamic behavior of the structures such as frequency splitting, dynamic strain energy localization and amplification of the forced response.

Companies developing cyclically symmetric structures, especially in the aero-space industry, are more and more interested in including mistuning early in development stages, in order to optimize the mass of parts by avoiding oversizing of the structures for design purposes.

This thesis aims to bring the knowledge, tools and procedures to Safran Aero Boosters in the identification of the mistuning in mono-stage blisks using an Inverse Component Mode Mistuning (Inverse CMM or ICMM) previously implemented using the \emph{Python} programming language. Some influence studies are also performed to assess the robustness on an industrial case.

First, the identification of mistuning in this thesis is carried out on noiseless, simulated FRFs of a lowly damped, randomly mistuned numerical model of an industrial blisk made up of 36 sectors. The result of this identification, which is based only on the first blade modes family, is as correlation of 99.95\% between the mistuning pattern identified with the ICMM method and the known mistuning pattern introduced in the numerical model.

Then, influence studies on the amount of measured modes, the amount of tuned-system modes retained for the generation of the Inverse Reduced Order Model (IROM) used for the identification of mistuning, the introduction of simulated noise in the FRFs to get as close as possible to experimental measurements, and the choice of another blade-modes family, prove that the method is really robust when enough modes can be extracted from the modal analysis.


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Author

  • Pecoraro, Silvano ULiège Université de Liège > Master ingé. civ. aérospat., à fin.

Promotor(s)

Committee's member(s)

  • Dimitriadis, Grigorios ULiège Université de Liège - ULg > Département d'aérospatiale et mécanique > Interactions Fluide-Structure - Aérodynamique expérimentale
    ORBi View his publications on ORBi
  • Bertha, Mathieu ULiège Université de Liège - ULg > Département d'aérospatiale et mécanique > LTAS - Vibrations et identification des structures
    ORBi View his publications on ORBi
  • De Cazenove, Jean
  • Total number of views 105
  • Total number of downloads 1










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