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다종 가스터빈 블레이드의 고온 회전시험용 지그의 구조해석에 기초한 설계 타당성

원문정보

Validity of Design based on Structural Analysis of Jig for High Temperature Rotation Test of Various Gas Turbine Blade

장주혁, 김태형

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

In this paper, the design feasibility of the high-temperature rotation test jig for the operating state of gas turbine blades was confirmed through thermal structural analysis and modal analysis. The structural analysis model was composed of assembled blade, disc, cover, and shaft. Here, the disc was designed to be assembled with two types of blade. First, thermal analysis was performed by applying the blade surface temperature of 800°C. Next, structural analysis was performed at 3600 RPM, the normal operating condition, and 4320 RPM, the overspeed operation condition. Lastly, modal analysis was performed to examine the natural frequency and deformation of the jig. The FE analysis showed that the temperature decreased from the blade to disc dovetail. Additionally, both the blade and disc showed structural stability as the maximum stress was below the yield strength. Also, the first natural frequency was 636.35Hz and 639.43Hz at 3600RPM and 4320RPM, respectively, satisfying gas turbine design standards and guidelines. Ultimately, the designed test jig was confirmed to be capable of high temperature and rotation testing of various blades.

목차

Abstract
1. 서론
2. 유한요소 해석모 델 및 경계조건
2.1. 유한요소 해석모 델
2.2. 열 해석 조건
2.3. 구조해석 조건
2.4. 모 달해석 조건
3. 유한요소해석 결과
3.1. 열 해석 결과
3.2. 구조해석 결과
3.3. 모 달해석 결과
4. 결론
References

저자정보

  • 장주혁 Juhyeok Jang. Dept. of Mechanical and Aerospace Systems, Graduate school, Cheongju University
  • 김태형 Taehyung Kim. Dept. of Aeronautical and Mechanical Engineering, Cheongju University Professor

참고문헌

자료제공 : 네이버학술정보

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