.Morphology analysis of mixed mode fatigue crack growth in a low alloy steel
Advanced Materials Researches, Engineering and Manufacturing Technologies in Industry
國外
EI
Vol787(2013):745-749
1
Experimental investigation of the strain-strengthen effect on the existed I+II mixed mode fatigue crack transformation propagation in an austenite stainless steel
Proceedings of the ASME 2013 Pressure Vessels and Piping Conference PVP2013
國外
EI
2013.7.14
1
Experimental Study of I+III Mixed Mode Fatigue Crack Transformation Propagation
Fatigue & Fracture of Engineering Materials & Structures
國外
EI SCI
2011,34,53-59
1
Calculation of the stress intensity factors for elliptical cracks embedded in a weld under tensile loading Ⅰ:single crack
Advanced Materials Research:High Performance Structures and Materials Engineering
國外
EI
2011,217-218,1419-1424
3
Path prediction of I+ III mixed mode fatigue crack propagation
Fatigue and Fracture of Engineering Materials and Structures
國外
EI SCI
2012.v35, n 2,
1
Path prediction of I+II mixed mode fatigue crack growth in pressure vessels made from 16MnDR
2012 International Symposium on Structural Integrity
國外
ISTP
2012,P367-370
1
Thermal stress analysis of a tubesheet with a welding clab
Advanced Materials Research
國外
EI
2011, 201-203,302-307
1
Effects of tube stiffness and tubesheet thickness on the thermal stress of the tubes and tubesheet
Advanced Materials Research
國外
EI
2011, 314-316,1552-1555
1
Calculation of the stress intensity factors for elliptical cracks embedded in a weld under tensile loading Ⅱ:double cracks
Advanced Materials Research:High Performance Structures and Materials Engineering
國外
EI
2011,217-218,1425-1429
3
Effective study of the envelope method for coalescing multiple surface cracks.
ISSI2011: Structural integrity in nuclear engineering