HEAD of Department, Assoc. Professor,
D.Sc. (Dr. habil.) in Technical Sciences
HEAD of Department, Assoc. Professor,
D.Sc. (Dr. habil.) in Technical Sciences
The total number of employees is 12, including:
4 D.Sc.
4 C.Sc.
3 young scientists and one PhD student
HEAD of Department, Assoc. Professor,
D.Sc. (Dr. habil.) in Technical Sciences
+38 044 205-21-48
Deputy Head of the Department, Senior Research Associate,
Candidate of Science (Engineering)
+38 044 205-20-74
vlza@i.ua
Leading staff scientist, Professor, D.Sc. in Technical Sciences
+38 044 205-21-43
zeixtt@gmail.com
Leading staff scientist, Senior Research Associate, D.Sc. in Technical Sciences
+38 044 205-20-74
polanna@ukr.net
Senior Research Scientist, Professor,
D.Sc. in Economics
+38 044 205-21-43
irina_shvets13@ukr.net
Senior Research Scientist,
Candidate of Science (Engineering)
+38 044 205-21-48
teacher_2010@meta.ua
Senior Research Scientist,
Candidate of Science (Engineering)
+38 044 205-20-89
vl_petrenko@ukr.net
Senior Research Scientist, Senior Research Associate, Candidate of Science (Engineering)
+38 044 200-96-26
rolenka2403@gmail.com
Research Scientist
+38 044 205-21-29
673399@gmail.com
Junior Research Scientist
+38 044 200-96-26
dima_2084@ukr.net
Leading Engineer
+38 044 200-96-26
maksimnaumenko43@gmail.com
Engineer
+38 044 205-21-29
dan2002@ukr.net
The Department was established in 1963 to carry out basic and applied research in the field of electroslag technologies and related metallurgical processes. The founder and the first head of the Department was Boris Medovar, Doctor of Technical Sciences, Professor, Academician of the National Academy of Sciences of Ukraine.
– Creation of new and improvement of existing technologies for the production of high-quality steels and alloys using the electroslag process and expansion of its practical application;
– Theoretical and applied research in the field of recycling technologies aimed at supporting the sustainable development of the circular economy and the development of green metallurgy technologies;
– Development and improvement of equipment for electroslag processes of special metallurgy and provision of technical assistance in the implementation of technologies and equipment to produce ingots from ESR metal.
– Development of effective means of control and automatic management of the ESR process.
– Development of electroslag remelting technology to produce modern railway rails with improved weldability (2015-2017)
– The development of scientific substantiation and the creation of a through-technology for the production of modern high-strength steels for welded structures is based on special electrometallurgy and composite electrodes (2017-2021)
– Development of electroslag technologies for controlling the crystallization of modern austenitic heat-resistant steels and alloys (2018-2020)
– Development and creation of a prototype of a modern computerized system for automatic control of the technological process of melting at an electric slag remelting furnace (2019)
– Development of aseptic technologies for the utilization of consumable medical instruments made of high-alloy steels (2020)
– Development of melting, out-of-furnace treatment and electroslag remelting methods for nitrogen martensitic steel (2021)
– Development of theoretical and technological bases for the production of microalloyed boron steels for the needs of power engineering (2021-2023)
– Development of the process technology for the production of ferrovanadium (2022-2023)
– A series of works on the development of technology and production of experimental ingots of nickel alloys and alloyed steels under electroslag melting conditions, including for alloy recycling (2023-2024)
– Study of electroslag and arc slag metallurgical processes to produce Fe-Al-x system alloys with aluminum content greater than 20% (2023-2026)
– Розробка гібридних електрометалургійних технологій та обладнання підвищеної енергетичної ефективності для виробництва нових сталей на кшталт 20Мn-10Al;
– Розробка безвуглецевих технологій утилізації довгомірних виробів на заготовки високої якості, готових для переробки куванням або прокатуванням;
– Розробка високоефективних режимів обробки шлаком, розкислення й модифікування сталі в печі-ковші із залученням аналізу великих баз даних та окисленості напівпродукту.