Volume 10B: Structures and Dynamics 2020
DOI: 10.1115/gt2020-16260
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Modeling of Cyclic Life for Compressor Rotor of Gas Turbine Engine Taking Into Account Production Deviations

Abstract: The regional aircraft with a turbofan gas turbine engine, created in Russia, is successfully operated in the world market. Further increase of the life and reduction of the cost of the life cycle are necessary to ensure the competitive advantages of the engine. One of the units limiting the engine life is the compressor rotor. The cyclic life of the rotor depends on many factors: the stress-strain state in critical zones, the life of the material under low-cycle loading, the regime of engine ope… Show more

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“…A modern approach to strength calculations requires the preparation of a parametric model of the part, which allows taking into account changes in individual parameters (geometric dimensions and material properties, as well as SSE fixation during tests) and conducts automated rebuilding of the model, which reduces the time for preparation of calculations [5,[13][14][15].…”
Section: Application Of Geometric Model Parameterization In Strength ...mentioning
confidence: 99%
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“…A modern approach to strength calculations requires the preparation of a parametric model of the part, which allows taking into account changes in individual parameters (geometric dimensions and material properties, as well as SSE fixation during tests) and conducts automated rebuilding of the model, which reduces the time for preparation of calculations [5,[13][14][15].…”
Section: Application Of Geometric Model Parameterization In Strength ...mentioning
confidence: 99%
“…The next stage is to conduct a series of calculations of a three-dimensional sub-model of the rotor sector containing the critical area. A parametric model is also developed for this stage [5]. The calculation takes into account the boundary conditions from the previous axisymmetric calculation, contact interaction of blades and drum, temperatures and centrifugal loads.…”
Section: Calculation Of the Three-dimensional Sector Of The Booster Drummentioning
confidence: 99%
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