A Study on the X-Ray Fractography of Turbine Blade under Fatigue Load

피로하중을 받는 터빈 블레이드의 X선 프랙토그래픽에 관한 연구

  • 홍순혁 (동아대학교 대학원 기계공학과) ;
  • 이동우 (동아대학교 대학원 기계공학과) ;
  • 조석수 (삼척대학교 기계.정밀기계.자동차공학부) ;
  • 주원식 (동아대학교 기계.산업 시스템공학부)
  • Published : 2002.02.01

Abstract

Turbine blade is subject to cyclic bending force by steam pressure. Stress analysis by fractography is already established technology as means far seeking cause of fracture and has been widely employed. In the X-ray frctography, plastic deformation and residual stress near the fracture surface can be determined and information of internal structure of material can be obtained. Therefore, to find a fracture mechanism of torsion-mounted blade in nuclear power plant, based on the information from the fracture surface obtained by fatigue test, the correlation of X-ray parameter and fracture mechanics parameter was determined and then the stress intensity factor to actual broken turbine blade was predicted.

Keywords

References

  1. 대한기계학회지 v.33 no.5 원자력발전소 기기의 노화손상 평가 박인규
  2. 박인규, 원자력발전소 기기의 노화손상 평가, 대한기계학회지, 제33권, 제5호, pp. 414-420, 1993
  3. 최우성 외4인, 'AFM과 유한요소법을 이용한 터빈 블레이드의 파손해석에 관한 연구,' 한국정밀공학회 춘계학술대회논문집, pp. 489-493, 2000
  4. Chiaki Tsubouchi, Takeshi Horikawa, 'Analysis of Connecting Rod Fatigue Fracture Surface by X-Ray Fractography,' J. Society Material Science, Japan, Vol. 49, No. 10. pp. 1143-1147, 2000 https://doi.org/10.2472/jsms.49.1143
  5. 松田和辛, 廣瀨辛雄, 茶谷明義. 田小啓介, '機械構造部品の破壞事故解析とX線フラトグラフィ,' 材料, 第39券, pp. 1240-1246, 1988
  6. ASTM Standards E647-93, 'Standard Test Method for Measurement of Fatigue Crack Growth Rates,' ASTM Standards Sec.3, Vol. 03.01, pp. 591-596, 1994
  7. Shimadzu, 'EHF-EB5-10L形 造作說明書,' 鳥津製作所, pp. 54-55, 1993
  8. 오세욱 외4인, 'X-선 회절에 의한 SS41강의 피로파면해석,' 한국해양공학회지, 제8권, 제1호, pp. 114-122, 1994
  9. 關田裕次, 兒玉昭太郞, 三洋啓介, 'X線解析による疲勞破面の硏究,' 材料, 第32卷, pp. 258-263, 1983
  10. N. Levy, P. V. Marcal, W. J. Ostengren and J. R. Rice, Int. T. Fracture. 7, p. 143, 1971
  11. 李東寧, '金屬强度學,' 文運堂, p. 240, 1991
  12. 日本材料學會, X線材料强度部門委員會, 'X線フラクトグラフィ(X線回折法による破面解析),' 材料, 第31卷, pp. 244-250, 1982