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Andriy Syrotyuk
Andriy Syrotyuk
Karpenko Physico-Mechanical Institute of the National Academy of Sciences of Ukraine
Verified email at ipm.lviv.ua - Homepage
Title
Cited by
Cited by
Year
Effect of hydrogen concentration on fatigue crack growth behaviour in pipeline steel
IM Dmytrakh, RL Leshchak, AM Syrotyuk, RA Barna
International Journal of Hydrogen Energy 42 (9), 6401-6408, 2017
662017
Relationship between fatigue crack growth behaviour and local hydrogen concentration near crack tip in pipeline steel
IM Dmytrakh, OD Smiyan, AM Syrotyuk, OL Bilyy
International Journal of Fatigue 50, 26-32, 2013
532013
Effect of hydrogen concentration on strain behaviour of pipeline steel
IM Dmytrakh, RL Leshchak, AM Syrotyuk
international journal of hydrogen energy 40 (10), 4011-4018, 2015
452015
Corrosion resistance of steel of the frames of boom sprayers
RL Leshchak, АV Babii, RА Barna, АМ Syrotyuk
Materials Science 56, 425-431, 2020
292020
Methods for the evaluation of fracture and strength of pipeline steels and structures under the action of working media. Part 2. Influence of hydrogen-containing media
АМ Syrotyuk, IM Dmytrakh
Materials Science 50, 475-487, 2015
262015
Methods for the evaluation of fracture and strength of pipeline steels and structures under the action of working media. Part І. Influence of the corrosion factor
АM Syrotyuk, IM Dmytrakh
Materials Science 50, 324-339, 2014
222014
A method for the assessment of the serviceability and fracture hazard for structural elements with cracklike defects
VV Panasyuk, IM Dmytrakh, L Toth, OL Bilyi, AM Syrotyuk
Materials Science 49, 565-576, 2014
182014
Specific features of the deformation and fracture of low-alloy steels in hydrogen-containing media: Influence of hydrogen concentration in the metal
ІМ Dmytrakh, AМ Syrotyuk, RL Leshchak
Materials Science 54, 295-308, 2018
152018
Specific mechanism of hydrogen influence on deformability and fracture of low-alloyed pipeline steel
I Dmytrakh, A Syrotyuk, R Leshchak
Procedia Structural Integrity 36, 298-305, 2022
142022
Corrosion-fatigue crack-growth resistance of steel of the frame of a sprayer boom
АМ Syrotyuk, АV Babii, RА Barna, RL Leshchak, PО Marushchak
Materials Science 56 (4), 466-471, 2021
122021
Influence of sodium nitrite concentration in aqueous corrosion solution on fatigue crack growth in carbon pipeline steel
IM Dmytrakh, RL Leshchak, AM Syrotyuk
International Journal of Fatigue 128, 105192, 2019
122019
Experimental and analytic investigation of the hydrogenation of pipe steels
АМ Syrotyuk, RL Leshchak, МІ Dorosh
Materials Science 53, 811-817, 2018
112018
Influence of the bulk concentration of hydrogen in the metal on the specific features of deformation of low-alloy pipe steel
ІM Dmytrakh, RL Leshchak, AM Syrotyuk, ОL Lutyts’ kyi
Materials Science 50, 170-178, 2014
112014
Experimental study of fatigue crack growth in pipeline steel under hydrogenating conditions
IM Dmytrakh, AM Syrotyuk, OD Smiyan
18th European Conference on Fracture: Fracture of Materials and Structures …, 2010
112010
Model of surface fatigue crack nucleation as result of corrosion deformation interactions
IM Dmytrakh, AM Syrotyuk, RS Hrabovskyi
Proc. of the 14th Europ. Conf. on Fracture (Cracow, Poland, September 2002 …, 2002
92002
Корозійна тривкість покриття каркаса штанги сільськогосподарського обприскувача
РЛ Лещак, АВ Бабій, РА Барна, МВ Бабій, РС Гіряк, АМ Сиротюк
Фізико-хімічна механіка матеріалів 58 (2), 116-121, 2022
82022
Experimental study of low concentration diffusible hydrogen effect on mechanical behaviour of carbon steel
IM Dmytrakh, RL Leshchak, AM Syrotyuk
International Conference on Theoretical, Applied and Experimental Mechanics …, 2020
82020
Specific effects of hydrogen concentration on resistance to fracture of ferrite-pearlitic pipeline steels
I Dmytrakh, A Syrotyuk, R Leshchak
Procedia Structural Integrity 16, 113-120, 2019
52019
Критерії оцінки ризику корозійно-втомного руйнування живильних трубопроводів енергоблоків ТЕС
ОЛ Білий, АМ Сиротюк
Вісник Нац. техн. ун-ту “ХПІ”. Тематичний вип.“Хімія, хімічна технологія та …, 2008
52008
Методи оцінювання руйнування та міцності трубопровідних сталей та конструкцій за дії робочих середовищ. Ч. 1. Вплив корозивного чинника
АМ Сиротюк, ІМ Дмитрах
Фізико-хімічна механіка матеріалів, 2014
42014
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