최대하중조건에 따른 Mg-Al-Zn 합금의 확률변수 잔차를 이용한 확률론적 피로균열전파모델 평가

논문상세정보
' 최대하중조건에 따른 Mg-Al-Zn 합금의 확률변수 잔차를 이용한 확률론적 피로균열전파모델 평가' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 기계공학
  • maximumload(최대하중)
  • mg-al-znalloys(mg-al-zn합금)
  • probabilistic fatigue crack propagation model(확률론적 피로균열전파 모델)
  • random variable(확률변수)
  • residual(잔차)
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
928 0

0.0%

' 최대하중조건에 따른 Mg-Al-Zn 합금의 확률변수 잔차를 이용한 확률론적 피로균열전파모델 평가' 의 참고문헌

  • 확률변수의 잔차를 이용한 Mg-Al-Zn 합금의 시편두께 조건에 따른 확률론적 피로균열전파모델 연구
    최선순 대한기계학회논문집 A 36 (4) : 379 ~ 386 [2012]
  • Probability, Reliability and Statistical Methods in Engineering Design
    Haldar, A. John Wiley & Sons Inc. [1999]
  • Magnesium Properties-Application-Potential
    Mordike, B. L. Materials Science & Engineering (A) 302 : 37 ~ 45 [2001]
  • Influence of Load Frequency and Ageing Heat Treatment on Fatigue Crack Propagation Rate of as-Extruded AZ61Alloy
    Zeng, R. C. International Journal of Fatigue 31 : 463 ~ 477 [2009]
  • Fatigue Lives and Crack Propagation Behavior of the Extruded Magnesium Alloy Processed Under Various Extrusion Conditions
    Ishihara, S. Journal of Solid Mechanics and Materials Engineering 2 : 487 ~ 495 [2008]
  • Fatigue Life Prediction of ZE41A Magnesium Alloy Using Weibull Distribution
    Sivapragash, M. Materials and Design 29 : 1549 ~ 1553 [2008]
  • Fatigue Crack Propagation and Fracture Mechanisms of Wrought Magnesium Alloys in Different Environments
    Tokaji, K. International Journal of Fatigue 31 (7) : 1137 ~ 1143 [2009]
  • Fatigue Behaviour and Fracture Mechanism of a Rolled AZ31 Magnesium Alloy
    Tokaji, K. International Journal of Fatigue 26 : 1217 ~ 1224 [2004]
  • ASTM E647-00, Standard Test Method of Fatigue Crack Growth Rates
    ASTM International [2000]
  • A Study on Probabilistic Fatigue Crack Propagation Model in Mg-Al-Zn Alloy Under Maximum Load Conditions (I) : Using Residual of Random Variable
    Choi, S. S. Proceedings of the KOSME Fall Conference 2010 [2010]