Ae Energietechnik
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Energy Department - Steam Turbine Postfach 89,Siemensstrasse 1210
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Profil scientifique partiel |
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Quelques documents de Ae Energietechnik
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Active Magnetic Bearnings In Aircraft Turbo-Machinery
AMBIT Sujets :
Materials Technology, Innovation, Technology Transfer, Industrial Manufacture
Type de contrat :
Cost-sharing contracts
Participants :
IMPERIAL COLLEGE OF SCIENCE, TECHNOLOGY AND MEDICINE UNITED KINGDOM
IMPERIAL COLLEGE OF SCIENCE, TECHNOLOGY AND MEDICINE
DEPARTMENT OF MECHANICAL ENGINEERING Exhibition Road SW7 2BX UNITED KINGDOM
Eidgenössische Technische Hochschule - ETH Zürich SCHWEIZ/SUISSE/SVIZZERA
Eidgenössische Technische Hochschule - ETH Zürich
Mechatronics Laboratorium 101,Raemistrasse 8092 SCHWEIZ/SUISSE/SVIZZERA
TURBOMECA SA FRANCE
TURBOMECA SA
DÉPARTEMENT ETUDES MOTEURS - DIRECTION DES ETUDES Avenue du Président Szydlowski 64511 FRANCE
UNIVERSITAET DARMSTADT/TU DEUTSCHLAND
UNIVERSITAET DARMSTADT/TU
MECHATRONISCHE SYSTEME IM MASCHINENBAU - FACHBEREICH MASCHINENBAU 30,Petersenstrasse 30 64287 DEUTSCHLAND
AE Energietechnik GmbH ÖSTERREICH
AE Energietechnik GmbH
Energy Department - Steam Turbine Postfach 1004 89,Siemensstrasse 1210 ÖSTERREICH
MECOS TRAXLER AG SCHWEIZ/SUISSE/SVIZZERA
MECOS TRAXLER AG
36,Industriestrasse 26 8404 SCHWEIZ/SUISSE/SVIZZERA
MTU Motoren- und Turbinen-Union München GmbH DEUTSCHLAND
MTU Motoren- und Turbinen-Union München GmbH
Dynamics Systems Department 665,Dachauer Strasse 80995 DEUTSCHLAND
AE Energietechnik Austria
AE Energietechnik
Energy Department - Steam Turbine Postfach 1004 89,Siemensstrasse 1210 Austria
MTU Motoren und Turbinen Union München Germany
MTU Motoren und Turbinen Union München
System Tests and Monitoring Department Postfach 50 06 40 665,Dachauer Strasse 665 Germany
MECOS TRAXLER Switzerland
MECOS TRAXLER
36,Industriestrasse 26 Switzerland
Objectives and content Active Magnetic Bearings (ABMs) offer the potential to replace conventional bearings and oil lubrication systems in aircraft engines, leading to reduced weight, reduced fire hazard, more compact designs, increased power and efficiency, and increased reliability and maintenance intervals. Medium-sized ABMs are already used in machine tools to obtain high accuracy at high speed and the on-line control of these devices is well developed. ABMs allow higher bearing velocities than conventional oillubricated bearings, permitting higher rotational speeds for large shafts. However, current AMB designs operate at about the same maximum temperature as oil bearings, about 150 C. They do not have the ability to survive massive overloads, such as are caused by heavy landings or blade-off conditions in aero engines, or earthquakes in power generation systems. This basic research project investigates the proposals for ABMs to be used in aero-engines in three areas: dynamics of the rotor and bearings in extreme load conditions. elevated-temperature operation of the ABMs with a target of 540 C. alternative design concept studies to realise the full potential of using advanced ABMs in aero-engines. The project will focus on investigating materials and designs to cope with these problems, and to develop analytical tools to predict the performance. Two test rigs will validate the prediction methods and demonstrate the improvements achieved. The advanced technology developed in this project will be applicable to other gas-turbine designs and to a wide range of high-technology machines such as pumps and compressors, increasing their safety and efficiency.
Source :
cordis
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cordis