Acknowledgement
Supported by : 한국과학재단
References
- Fatigue of Engineering Materials & Structures v.7 no.2 Fatigue Behavior of a Rail Steel Scutti, J.J.
- 레일용접부의 특성에 관한 연구 한국철도기술연구원
- J. of Basic Engineering, Trans. ASME, Series D v.89 Identification of Potential Failure Nuclei in Rolling Contact Fatigue Martin, J.A.;Eberhardt, A.D.
- ASME J. of Lubrication Technology v.104 Subsurface and Surface Cracking Due to Hertzian Contact Keer. L.M.;Bryant, M.D.;Haritos, G.K.
- Advances in Fracture Research (Fracture 84) v.5 Some Theoretical and Experimental Aspects of Mixed Mode Fractures Richard, H.A.
- Engineering Fracture Mechanics v.7 Crack-Morphological Aspect in Fracture Mechanics Kitagawa, H.;Yuuki, R.;Toshiaki, A.
- 대한기계학회논문집(A) v.21 no.7 구름 및 미끄럼 접촉하의 중공원판의 표면하층균열에 대한 J-적분 이강용;김준엽
-
대한기계학회논문집(A)
v.20
no.11
혼합모드 하중을 받는 CTB 시험편에서
$K_I\;K_{II}$ 와 J-적분의 측정방법 강기주;홍기주 - 모드 I 및 혼합모드 하중하에서의 레일강의 피로거동 김성훈
- ANSYS-Users Manual. Swanson Analysis Systems Inc.
- Wear v.208 Finite Element analysis of horizontal and branched subsurface cracks in brittle materials Jayaraman, S.;Sadeghipour, K.;Baran, G.
- Standard Test Method for Plane-Strain Fracture Toughness of Metallic Materials, ASTM E399-93
- Standard Test Method for Measurement of Fatigue Crack Growth Rates, ASTM E647-93
- Wear v.25 The Delamination Theory of Wear Suh, N.P.
- ASME, J. of. Tribology v.108 Growth Mechanism of Subsurface Crack due to Hertzian Contact Kaneta, M.;Murakami, Y.;Okaza, T.
- Engineering Fracture Mechanics v.7 The Condition of Fatigue Crack Growth in Mixed Mode Condition Otsuka, A.;Mori, K.;Miyata, T.
- Mechanics and Micromechanics of Fatigue Crack Propagation, ASTM STP 1020 Tanaka, K.
- Grain Size Effect on Crack Nucleation and Growth in Long-Life Fatigue of Low-Carbon Steel, ASTM STP 675 Taira, S.;Tanaka, K.;Hoshina, M.
- The Effect of Stress Ratio During Crack Propagation and Fatigue for 2024-T3 and 7075-T6 Aluminum, ASTM STP 462 Walker, K.
- Fatigue Crack Growth of Gun Tube Steel under Spectrum Loading Dennis, K.R.