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Gunnar Härkegård
Gunnar Härkegård
Professor emeritus, NTNU, Trondheim
Verified email at ntnu.no
Title
Cited by
Cited by
Year
Fatigue life assessment of aluminum alloys with casting defects
B Skallerud, T Iveland, G Härkegård
Engineering Fracture Mechanics 44 (6), 857-874, 1993
2961993
Modeling of thermal stresses and probability of survival of tubular SOFC
A Nakajo, C Stiller, G Härkegård, O Bolland
Journal of Power Sources 158 (1), 287-294, 2006
1792006
Fatigue life distribution and size effect in ductile cast iron for wind turbine components
M Shirani, G Härkegård
Engineering Failure Analysis 18 (1), 12-24, 2011
1712011
Non‐local stress approach for fatigue assessment based on weakest‐link theory and statistics of extremes
A Wormsen, B Sjödin, G Härkegård, A Fjeldstad
Fatigue & Fracture of Engineering Materials & Structures 30 (12), 1214-1227, 2007
1242007
Assessment of methods for prediction of notch and size effects at the fatigue limit based on test data by Böhm and Magin
G Härkegård, G Halleraker
International Journal of Fatigue 32 (10), 1701-1709, 2010
862010
Large scale axial fatigue testing of ductile cast iron for heavy section wind turbine components
M Shirani, G Härkegård
Engineering Failure Analysis 18 (6), 1496-1510, 2011
612011
Damage tolerant design of cast components based on defects detected by 3D X-ray computed tomography
M Shirani, G Härkegård
International Journal of Fatigue 41, 188-198, 2012
592012
Simulation of fatigue crack growth in components with random defects
A Fjeldstad, A Wormsen, G Härkegård
Engineering Fracture Mechanics 75 (5), 1184-1203, 2008
582008
A statistical investigation of fatigue behaviour according to Weibull’s weakest link theory
A Wormsen, G Härkegård
ECF15, 2004
422004
Neuber prediction of elastic-plastic strain concentration in notched tensile specimens under large-scale yielding
G Härkegård, T Mann
The Journal of Strain Analysis for Engineering Design 38 (1), 79-94, 2003
422003
A comparative study of design code criteria for prediction of the fatigue limit under in-phase and out-of-phase tension–torsion cycles
ØA Bruun, G Härkegård
International Journal of Fatigue 73, 1-16, 2015
412015
The application of asymptotic solutions to a semi-elliptical crack at the root of a notch
A Wormsen, A Fjeldstad, G Härkegård
Engineering Fracture Mechanics 73 (13), 1899-1912, 2006
362006
A post-processor for fatigue crack growth analysis based on a finite element stress field
A Wormsen, A Fjeldstad, G Härkegård
Computer methods in applied mechanics and engineering 197 (6-8), 834-845, 2008
332008
Growth of naturally initiated fatigue cracks in ferritic gas turbine rotor steels
G Härkegård, J Denk, K Stärk
International journal of fatigue 27 (6), 715-726, 2005
312005
Fracture toughness and growth of short and long fatigue cracks in ductile cast iron EN‐GJS‐400‐18‐LT
HR Zambrano, G Härkegård, KF Stärk
Fatigue & Fracture of Engineering Materials & Structures 35 (4), 374-388, 2012
302012
Casting defects and fatigue behaviour of ductile cast iron for wind turbine components: A comprehensive study
M Shirani, G Härkegård
Materialwissenschaft und Werkstofftechnik 42 (12), 1059-1074, 2011
282011
The fatigue limit: An analytical solution to a Monte Carlo problem
A Cetin, G Härkegård, A Naess
International Journal of fatigue 55, 194-201, 2013
252013
Fatigue life prediction of components made of spheroidal graphite cast iron
M Shirani, G Härkegård, N Morin
Procedia Engineering 2 (1), 1125-1130, 2010
252010
Fatigue life prediction for large threaded components
A Cetin, G Härkegård
Procedia Engineering 2 (1), 1225-1233, 2010
242010
Short fatigue crack growth in aluminium alloy 6082-T6
T Mann, G Härkegård, K Stärk
International Journal of Fatigue 29 (9-11), 1820-1826, 2007
242007
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