Estimation of safety and durability of the turbine blades of gas-turbine engines

The improving reliability of stationary gas turbines depends on the guaranteed efficiency of turbine blades tested by the complex effects of high temperatures, mechanical loads, and aggressive medium. Turbine blades are critical parts with complex geometric forms made of nickel-base superalloys. T...

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Main Authors: V.I. Shmyrko, A.V. Korobko, A.O. Pysarskiy, J.I. Trojan
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine. Physico- Technological Institute of Metals and Alloys 2020-09-01
Series:Металознавство та обробка металів
Subjects:
Online Access:https://momjournal.com.ua/sites/default/files/MOM3_20-63-68%20%288%29.pdf
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author V.I. Shmyrko
A.V. Korobko
A.O. Pysarskiy
J.I. Trojan
author_facet V.I. Shmyrko
A.V. Korobko
A.O. Pysarskiy
J.I. Trojan
author_sort V.I. Shmyrko
collection DOAJ
description The improving reliability of stationary gas turbines depends on the guaranteed efficiency of turbine blades tested by the complex effects of high temperatures, mechanical loads, and aggressive medium. Turbine blades are critical parts with complex geometric forms made of nickel-base superalloys. The complexity of forecasting of their lifetime is explained by the data missing on the strength and corrosion resistance during their lifetime. The investigation of their characteristics takes much time and is expensive. Nowadays, the long-term strength calculations are carried out using various methods of extrapolation of the results of short-term tests. In order to forecast the high-temperature characteristics of alloys operating in an oxidizing medium, the time-temperature equations of the long-term strength by Miller-Larson, Cherby-Dorn, Manson-Haferd are most widely used. The studies of the possibility to use parametric time-temperature equations to forecasting the heat resistance of parts tested high-temperature sulfide-oxiding impact are presented. The most reliable parametric method of forecasting the trouble-free operation of the turbine blades has been determined. The analysis of the experimental and calculated values of the long-term strength was showed that under aggressive conditions, the calculation of the time to rupture is possible only for the corrosion-resistant alloys IN-738, ЗМИ-3У. A significant increase in the scattering of experimental and extrapolated features is characteristic, regardless of the method was considered. It was established to make a forecast for ВЖЛ 12У alloy with an increase in extrapolation time to 5,000 hours at 850 °C and above, it is impossible. The maximum resource calculation of trouble-free operation of parts allows not only to save expensive heatproof materials, decrease labor efforts for their manufacture and repair process, but also to increase the reliable operation of gas-turbine engines.
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spelling doaj.art-0af1251e12714826ad88633de5effecb2024-02-26T08:31:40ZengNational Academy of Sciences of Ukraine. Physico- Technological Institute of Metals and AlloysМеталознавство та обробка металів2073-95832664-24412020-09-01263636810.15407/mom2020.03.063Estimation of safety and durability of the turbine blades of gas-turbine enginesV.I. Shmyrko0https://orcid.org/0000-0003-1489-0166A.V. Korobko1https://orcid.org/0000-0001-9083-9958A.O. Pysarskiy2J.I. Trojan3National University “Zaporizhzhia Polytechnic”National University “Zaporizhzhia Polytechnic”National University “Zaporizhzhia Polytechnic”National University “Zaporizhzhia Polytechnic”The improving reliability of stationary gas turbines depends on the guaranteed efficiency of turbine blades tested by the complex effects of high temperatures, mechanical loads, and aggressive medium. Turbine blades are critical parts with complex geometric forms made of nickel-base superalloys. The complexity of forecasting of their lifetime is explained by the data missing on the strength and corrosion resistance during their lifetime. The investigation of their characteristics takes much time and is expensive. Nowadays, the long-term strength calculations are carried out using various methods of extrapolation of the results of short-term tests. In order to forecast the high-temperature characteristics of alloys operating in an oxidizing medium, the time-temperature equations of the long-term strength by Miller-Larson, Cherby-Dorn, Manson-Haferd are most widely used. The studies of the possibility to use parametric time-temperature equations to forecasting the heat resistance of parts tested high-temperature sulfide-oxiding impact are presented. The most reliable parametric method of forecasting the trouble-free operation of the turbine blades has been determined. The analysis of the experimental and calculated values of the long-term strength was showed that under aggressive conditions, the calculation of the time to rupture is possible only for the corrosion-resistant alloys IN-738, ЗМИ-3У. A significant increase in the scattering of experimental and extrapolated features is characteristic, regardless of the method was considered. It was established to make a forecast for ВЖЛ 12У alloy with an increase in extrapolation time to 5,000 hours at 850 °C and above, it is impossible. The maximum resource calculation of trouble-free operation of parts allows not only to save expensive heatproof materials, decrease labor efforts for their manufacture and repair process, but also to increase the reliable operation of gas-turbine engines.https://momjournal.com.ua/sites/default/files/MOM3_20-63-68%20%288%29.pdfsuperalloysforecastingsafetydurabilitybladesgas turbinestime-temperature relation-shipsparametric dependenciesoxidative mediumsulfide-oxidsng corrosion medium.
spellingShingle V.I. Shmyrko
A.V. Korobko
A.O. Pysarskiy
J.I. Trojan
Estimation of safety and durability of the turbine blades of gas-turbine engines
Металознавство та обробка металів
superalloys
forecasting
safety
durability
blades
gas turbines
time-temperature relation-ships
parametric dependencies
oxidative medium
sulfide-oxidsng corrosion medium.
title Estimation of safety and durability of the turbine blades of gas-turbine engines
title_full Estimation of safety and durability of the turbine blades of gas-turbine engines
title_fullStr Estimation of safety and durability of the turbine blades of gas-turbine engines
title_full_unstemmed Estimation of safety and durability of the turbine blades of gas-turbine engines
title_short Estimation of safety and durability of the turbine blades of gas-turbine engines
title_sort estimation of safety and durability of the turbine blades of gas turbine engines
topic superalloys
forecasting
safety
durability
blades
gas turbines
time-temperature relation-ships
parametric dependencies
oxidative medium
sulfide-oxidsng corrosion medium.
url https://momjournal.com.ua/sites/default/files/MOM3_20-63-68%20%288%29.pdf
work_keys_str_mv AT vishmyrko estimationofsafetyanddurabilityoftheturbinebladesofgasturbineengines
AT avkorobko estimationofsafetyanddurabilityoftheturbinebladesofgasturbineengines
AT aopysarskiy estimationofsafetyanddurabilityoftheturbinebladesofgasturbineengines
AT jitrojan estimationofsafetyanddurabilityoftheturbinebladesofgasturbineengines