Tuning of blade natural frequencies outside high excitation region by using Ceramic Particle Reinforced Composite Materials for a typical Gas Turbine Engine Compressor Blade

2022-26-1144

05/26/2022

Event
AeroCON 2022
Authors Abstract
Content
Composite materials have time and again proven to be highly useful, especially in the aerospace industry with the increasing need for light-weight materials albeit with high stiffness to strength ratios. The Ceramic Particle Reinforced Composites can be effectively utilized in tuning the natural frequencies of components by varying the volume fractions up to 60% with the help of Representative Unit Cell (RUC) Models. The aim of this paper is to tune the natural frequencies of a typical compressor blade used in a gas turbine engine by modifying the material properties without changing the design profile significantly. The design profiles of blades are arrived at after a lot of engineering iterations from aerodynamics stability point of view and are also finalized based on meeting key performance parameters. However, the structural analysis studies are carried out after the profile generation, which may sometime predict that the natural frequencies are within the high excitation range of the engine. This adds to the risk of failure due to vibrational stresses caused by resonant frequencies where the vibration loads are higher in magnitude. Therefore, if the natural frequencies of the blades can be tuned in such a way that they do not lie within the high excitation bandwidth, then it can save engineering costs significantly and avoid rework in the design phase. In addition, it can help in saving the weight without compromising on the structural integrity of the blades. The studies will be performed using the commercial FE software (Ansys Workbench) by homogenizing the effective material properties and this will involve a direct comparison of natural frequencies as well as mode shapes with the existing metallic v. proposed composite material.
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Citation
Putrevu, R., and Kari, S., "Tuning of blade natural frequencies outside high excitation region by using Ceramic Particle Reinforced Composite Materials for a typical Gas Turbine Engine Compressor Blade ," SAE Technical Paper 2022-26-1144, 2022, .
Additional Details
Publisher
Published
May 26, 2022
Product Code
2022-26-1144
Content Type
Technical Paper
Language
English