Zobrazeno 1 - 10
of 26
pro vyhledávání: '"Tetiana Roik"'
Publikováno v:
Scientific Journal of the Military University of Land Forces, Vol 187, Iss 1, Pp 140-149 (2018)
The paper analyzes the possible boundary conditions for the application of new type of bushings in the vehicle’s chassis. The bushings have been manufactured from the copper-based antifriction composite material alloyed by nickel and molybdenum, wi
Externí odkaz:
https://doaj.org/article/33610b2e4517402284c06ef767c801fd
Publikováno v:
Energies, Vol 14, Iss 24, p 8423 (2021)
A large number of processes for transporting and handling palletized goods using a forklift in logistics centers is usually associated with an increase in pallet and load damage. Therefore, first of all, the “damage mechanism” was identified. A c
Externí odkaz:
https://doaj.org/article/7b519026e787473989ca1437fe310b42
Autor:
Tetiana Roik, Yuliia Vitsiuk
Publikováno v:
Технологія і техніка друкарства, Vol 0, Iss 4(54), Pp 58-66 (2016)
The development of a modern technical equipment in the machine-building industry has a great importance for the problem of increasing the machines and mechanisms’ durability. It is no more an important problem among the tasks of creation the new te
Externí odkaz:
https://doaj.org/article/bb1a0a09301f4b55892113bffb3181a5
Autor:
Kayode Olaleye, Tetiana Roik, Adam Kurzawa, Oleg Gavrysh, Dariusz Pyka, Mirosław Bocian, Krzysztof Jamroziak
Publikováno v:
Materials Science-Poland. 40:147-157
This article is devoted to research of the tribosynthesis mechanism of antifriction films and their influence on the functional properties of antifriction composites based on copper alloyed with nickel and molybdenum with the CaF2 solid lubricant add
Publikováno v:
Powder Metallurgy and Metal Ceramics. 60:191-197
Publikováno v:
Materials; Volume 15; Issue 9; Pages: 3404
The paper is devoted to studying the chemical elements distribution in the material’s structure depending on the manufacturing technological parameters and their effect on properties of a new self-lubricating antifriction composite based on powder
Publikováno v:
KPI Science News, Vol 0, Iss 1, Pp 54-60 (2020)
Наукові вісті КПІ; № 1 (2020); 54-60
KPI Science News; № 1 (2020); 54-60
Научные вести КПИ; № 1 (2020); 54-60
Наукові вісті КПІ; № 1 (2020); 54-60
KPI Science News; № 1 (2020); 54-60
Научные вести КПИ; № 1 (2020); 54-60
Background. Development of the technological measures for creating new antifriction composite materials based on waste powders of steel P7M2F6 with solid lubricant CaF2, intended for operation at temperatures up to 600 °C, sliding speeds up to 1 m/s
Publikováno v:
Sustainability; Volume 14; Issue 5; Pages: 2799
In this article, we present research results on the structure and properties of new self-lubricating antifriction composites based on 4H4VMFS tool steel grinding waste with solid lubricant additives. The new composites are designed to work in the fri
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::662052b867e2ca7bfc2bfff608304169
https://strathprints.strath.ac.uk/79810/1/Roik_etal_Sustainability_2022_New_antifriction_composites_for_printing_machines.pdf
https://strathprints.strath.ac.uk/79810/1/Roik_etal_Sustainability_2022_New_antifriction_composites_for_printing_machines.pdf
Autor:
Dariusz Pyka, Kayode Olaleye, Adam Kurzawa, Tetiana Roik, Grzegorz Ziolkowski, Miroslaw Bocian, Krzysztof Jamroziak
Publikováno v:
Structural Integrity ISBN: 9783030978211
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::4ddf80f0e07c47d893ad72a5e0a5798d
https://doi.org/10.1007/978-3-030-97822-8_5
https://doi.org/10.1007/978-3-030-97822-8_5
Autor:
Ahmad Rashedi, Abhay Kumar Chaubey, Taslima Khanam, Gurusami Balaganesan, Tetiana Roik, Sadaqat Ali
Publikováno v:
Sustainability
Volume 13
Issue 16
Sustainability, Vol 13, Iss 8823, p 8823 (2021)
Volume 13
Issue 16
Sustainability, Vol 13, Iss 8823, p 8823 (2021)
This article investigates the impact of manufacturing technology on the structure, mechanical, and tribological properties of new antifriction composite materials based on R6M5 high-speed tool steel grinding waste. The characteristics of the new comp