유한요소 해석을 통한 열 차폐 코팅의 열구배 피로 특성 평가

Evaluation on Thermal Gradient Fatigue Characteristics of Thermal Barrier Coating through Finite Element Analysis
  • 이정민
  • 송현우
  • 윤정한
  • 위성욱
  • 김용석
  • 외 2명

초록

A gas turbine is a power plant unit that converts thermal energy into rotational energy by rotating a blade using high-temperature and high-pressure combustion gas. A gas turbine blade is directly exposed to a high-temperature flame. Various studies have aimed to improve the durability of the blade in harsh conditions. One proposes coating the blade with a thermal barrier to protect it from the flame, using a ceramic material with better thermal insulation. Another proposes using internal cooling, by creating an air flow path inside the blade to lower its temperature. Because both these techniques create a thermal gradient in the cross section of the blade, they amplify the difference in thermal expansion, thereby producing thermal stress in the blade and the thermal barrier coating. This study investigates the internal cooling effect on thermal gradient fatigue by using finite element analysis.

키워드

가스터빈 블레이드열 차폐 코팅열구배 피로유한요소해석Gas turbine bladeThermal barrier coatingThermal gradient fatigueFinite element analysis
제목
유한요소 해석을 통한 열 차폐 코팅의 열구배 피로 특성 평가
제목 (타언어)
Evaluation on Thermal Gradient Fatigue Characteristics of Thermal Barrier Coating through Finite Element Analysis
저자
이정민송현우윤정한위성욱김용석구재민석창성
DOI
10.7736/KSPE.2017.34.7.479
발행일
2017-07
저널명
한국정밀공학회지
34
7
페이지
479 ~ 483