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Determining fatigue limits with thermal analysis of static traction testsRISITANO, A; RISITANO, G.Fatigue & fracture of engineering materials & structures (Print). 2013, Vol 36, Num 7, pp 631-639, issn 8756-758X, 9 p.Article

A three-dimensional graphical aid to analyze fatigue crack nucleation and propagation phases under fatigue limit conditionsATZORI, B; LAZZARIN, P.International journal of fracture. 2002, Vol 118, Num 3, pp 271-284, issn 0376-9429, 14 p.Article

Fatigue of 2024-T351 aluminium alloy at different load ratios up to 1010 cyclesMAYER, H; SCHULLER, R; FITZKA, M et al.International journal of fatigue. 2013, Vol 57, pp 113-119, issn 0142-1123, 7 p.Conference Paper

Checking the fatigue limit from thermographic techniques by means of a probabilistic model of the epsilon-N fieldFERNANDEZ-CANTELI, Alfonso; CASTILLO, Enrique; ARGÜELLES, Antonio et al.International journal of fatigue. 2012, Vol 39, pp 109-115, issn 0142-1123, 7 p.Conference Paper

On a new temperature factor to predict the fatigue limit at different temperaturesCOSTA, N; SILVA, F. S.International journal of fatigue. 2011, Vol 33, Num 4, pp 624-631, issn 0142-1123, 8 p.Article

Quantitative Thermographic Methodology for fatigue assessment and stress measurementWANG, X. G; CRUPI, V; GUO, X. L et al.International journal of fatigue. 2010, Vol 32, Num 12, pp 1970-1976, issn 0142-1123, 7 p.Article

Fatigue limit diagrams of tufftrided spheroidal and flaky graphite cast ironsHOHJO, Hiroshi; YAMADA, Akira; SARUKI, Katsushi et al.Zairyo. 2003, Vol 52, Num 10, pp 1204-1210, issn 0514-5163, 7 p.Article

A methodology to determine a conditional probability density distribution surface from S―N dataZHAI, Jian-Ming; LI, Xiao-Yang.International journal of fatigue. 2012, Vol 44, pp 107-115, issn 0142-1123, 9 p.Article

Adopting lock-in infrared thermography technique for rapid determination of fatigue limit of aluminum alloy riveted component and affection to determined result caused by initial stressLI, X. D; ZHANG, H; WU, D. L et al.International journal of fatigue. 2012, Vol 36, Num 1, pp 18-23, issn 0142-1123, 6 p.Article

Fatigue limits for notches of arbitrary profileCHAVES, V; NAVARRO, A.International journal of fatigue. 2013, Vol 48, pp 68-79, issn 0142-1123, 12 p.Article

A survey on evaluating the fatigue limit under multiaxial loadingPAPUGA, Jan.International journal of fatigue. 2011, Vol 33, Num 2, pp 153-165, issn 0142-1123, 13 p.Article

Multiaxial fatigue criterion for complex loading based on stress invariantsVU, Q. H; HALM, D; NADOT, Y et al.International journal of fatigue. 2010, Vol 32, Num 7, pp 1004-1014, issn 0142-1123, 11 p.Article

Remarks on multiaxial fatigue limit criteria based on prismatic hulls and ellipsoidsCASTRO, F. C; ARAUJO, J. A; MAMIYA, E. N et al.International journal of fatigue. 2009, Vol 31, Num 11-12, pp 1875-1881, issn 0142-1123, 7 p.Conference Paper

Estimation method for the fatigue limit of case hardened steelsGENEL, K.Surface & coatings technology. 2005, Vol 194, Num 1, pp 91-95, issn 0257-8972, 5 p.Article

An investigation of a fatigue model with two competing failure mechanismsKARLEN, Kristoffer; OLSSON, Mårten.International journal of fatigue. 2014, Vol 64, pp 131-139, issn 0142-1123, 9 p.Article

A physically based extreme value characterization of material fatigueCETIN, A; NAESS, A; HÄRKEGARD, G et al.International journal of fatigue. 2013, Vol 47, pp 216-221, issn 0142-1123, 6 p.Article

The fatigue limit: An analytical solution to a Monte Carlo problemCETIN, A; HÄRKEGARD, G; NAESS, A et al.International journal of fatigue. 2013, Vol 55, pp 194-201, issn 0142-1123, 8 p.Article

Probabilistic measurements of the fatigue limit data from a small sampling up-and-down test methodZHAO, Y. X; YANG, B.International journal of fatigue. 2008, Vol 30, Num 12, pp 2094-2103, issn 0142-1123, 10 p.Article

Ermittlung von Betriebsfestigkeits-Kennwerten auf der Basis einer reduzierten Bauteil-Dauerfestigkeit = Prédiction des données de résistance à la fatigue aléatoire sur la base d'une limite de fatigue structurelle réduite = Prediction of random fatigue strength data on the basis of a reduced structural fatigue limitGASSNER, E.Materialprüfung. 1984, Vol 26, Num 11, pp 394-398, issn 0025-5300Article

Changes in mechanical properties of vehicle components after strengthening under low-amplitude loads below the fatigue limitXI, L; SONGLIN, Z.Fatigue & fracture of engineering materials & structures (Print). 2009, Vol 32, Num 10, pp 847-855, issn 8756-758X, 9 p.Article

Dissipative aspects in thermographic methodsCURA, F; GALLINATTI, A. E; SESANA, R et al.Fatigue & fracture of engineering materials & structures (Print). 2012, Vol 35, Num 12, pp 1133-1147, issn 8756-758X, 15 p.Article

Ecological criteria for the selection of materials in fatigueCHAVES, V.Fatigue & fracture of engineering materials & structures (Print). 2014, Vol 37, Num 9, pp 1034-1042, issn 8756-758X, 9 p.Article

Modelling curved S-N curvesLOREN, S; LUNDSTRÖM, M.Fatigue & fracture of engineering materials & structures (Print). 2005, Vol 28, Num 5, pp 437-443, issn 8756-758X, 7 p.Article

Calculating the fatigue limit of tee and lap welding joints = Calcul de la limite de fatigue d'assemblages en T et à recouvrementBAKSHI, O. A; ZAITSEV, N. I; SHRON, L. B et al.Welding Production. 1983, Vol 30, Num 2, pp 13-16, issn 0043-230XArticle

On fatigue limit in the presence of notches: classical vs. recent unified formulationsCIAVARELLA, Michele; MENEGHETTI, Giovanni.International journal of fatigue. 2004, Vol 26, Num 3, pp 289-298, issn 0142-1123, 10 p.Article

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