Page 306 - УДК
P. 306
306
Mech. Eng. 1990. Vol. XXXVII, № 3. P. 145–167.
193. Bolotin V. V. Reliability Against Fatigue Fracture in the Presence of Sets of
Cracks // Eng. Fract. Mech. 1996. Vol. 53, № 5. P. 753–759.
194. Bertini L., Marmorini L. On the Characterization of Fatigue Crack Growth
Behaviour From a Statistical Viewpoint Via the Paris Law Coefficients // Fatigue
and Stress: 2nd Int. Conf. Gourmay-sur-Marne, 1989. P. 48–58.
195. Jakubczak H. Probabilistic fracture mechanics approach for reliability
assessment of welded structures of earthmoving machines // Eur. Struct. Integr.
Soc. Elsevier, 1999. Vol. 23. P. 229–238.
196. Brückner‐Foit A., Jäckels H., Quadfasel U. Prediction of the Lifetime
Distribution of High-Strength Components Subjected to Fatigue Loading //
Fatigue Fract. Eng. Mater. Struct. 1993. Vol. 16, № 8. P. 891–908.
197. Zhao Z., Haldar A. Bridge fatigue damage evaluation and updating using non-
destructive inspections // Eng. Fract. Mech. Pergamon, 1996. Vol. 53, № 5. P.
775–788.
198. Yasnii P. V., Dyvdyk O. V., Iasnii V.P. Modeling of Cold Plastic Deformation
of the Holes Made in Specimens of Shape-Memory Alloy // Mater. Sci. Springer,
2020. P. 1–7.
199. Bykiv N., Yasniy P., Iasnii V. Modeling of mechanical behavior of reinforced
concrete beam reinforced by the shape memory alloy insertion using finite
elements method // Mod. Technol. methods Calc. Constr. 2020. Vol. 13. P. 24–
34.
200. Chattoraj I. The effect of hydrogen induced cracking on the integrity of steel
components // Sadhana. 1995. Vol. 20, № 1. P. 199–211.
201. Iasnii V.P., Student O.Z., Nykyforchyn H.М. Influence of hydrogenation on the
character of fracture of Nitinol alloy in tension // Mater. Sci. 2019. Vol. 55, № 3.
P. 386–391.
202. Bastien P., Azou P. Influence de l’ amplitude vitesse des deformations plastiques
sur la segretation de la hydrogene dans le fer et los aciers // Comptes Rendus.
1951. Vol. 232. P. 69–71.