Preview

Plasticheskie massy

Advanced search

The effect of salt mist on the abrasion of thermoplastic polyurethanes

https://doi.org/10.35164/0554-2901-2024-01-37-39

Abstract

The paper proposes a mathematical model for predicting the abrasion of polymer materials based on various brands of TPU after exposure to salt mist, simulating the operating conditions of refueling fuel hoses in seawater and/or on the coast.

About the Authors

A. A. Kolesnikov
Russian State University named after A.N. Kosygin
Russian Federation

Moscow



E. S. Bokova
Russian State University named after A.N. Kosygin
Russian Federation

Moscow



A. V. Dedov
Moscow Polytechnic University
Russian Federation

Moscow



References

1. Kerber S (2013) Analysis of one and two-story single family home fi re dynamics and the impact of fi refighter horizontal ventilation//Fire Technol. 2013. V.49. №4. Р. 857–889.

2. Kerber S., Regan J.W., Horn G.P., Fent K.W., Smith D.L. Effect of Firefighting Intervention on Occupant Tenability during a Residential Fire//Fire Technol. 2019. V.55. №1. Р. 2289–2316.

3. Chung Y.-C., Park J. E., Choi J. W., Chun B. C. Enhancement of Tensile Strength and Shape Recovery Characteristics of Grafted Polyurethane Using Melamine as a Crosslinking Agent//Macromol. Res. 2021. V.29. №11. Р. 776–784.

4. Portnov S. V., Podkolzina L. V., Yakovlev S. N. Main types of wear of modern structural polyurethanes//Sb. Mashinostr. Priborostr. 2016. №12. Р. 40–44.

5. Abdulkadir L. N., Abou-El-Hossein K., Jumare A.I., Odedeyi P.B., Liman M.M., Olaniyan T.A. Ultra-precision diamond turning of optical silicon—a review//Inter. J. Advanced Manufacturing Technol. 2018. V.96. №4. Р.173–208.

6. Mashkov Yu. K., Kurguzova O. A., Ruban A. S. Development and research of wear-resistant polymer nanocomposites//Vestn. Sib. Gos. Avtomob.-Dorozhn. Akad. 2018. V.15. №1. Р. 36–45.

7. Senichev V.Yu., Pogoreltsev E.V., Makarova M.A., Slobodinyuk A.I. The Influence of Fillers on Abrasive Wear of Segmented Polyurethane Urea//Polym. Sci. Series D. 2021. V.14. №3. Р. 467–469.

8. Jincheng W., Yuehui C., Zhaoqun D. Research on the adhesive property of polyethylene terephthalate (PET) cord and nitrile-butadiene rubber (NBR) system. J. Ind. Text. 2005. V.35. №2. Р. 157–172.

9. Jamshidi M. Study on cord/rubber interface at elevated temperatures by H-pull test method//Appl. Surf. Sci. 2005. V.249. №1–4. Р. 208–215.

10. Milyushkina E.G., Lyusova L.R., Monakhova T.V., Faleev A.G., Petrogradskii A.V. Chelates of Metals as Adhesion Promotors in Adhesive Compositions Based on Butadiene–Nitrile Rubber//Polym. Sci. Series D. 2018. V.11. №3. Р. 284–287.

11. Liu Y., Tan H Effect of accelerated xenon lamp aging on the mechanical properties and structure of thermoplastic polyurethane for stratospheric airship envelope//J.Wuhan University of Technology-Mater. Sci. Ed. 2014, V.29. №6. Р. 1270–1276.

12. Uddin Md. S., Ju J. Understanding the shape memory behavior of thermoplastic polyurethane elastomers with coarse-grained molecular dynamics simulations//MRS Advances. 2017. V.2. № 6. Р. 1–6.

13. Radzi S A. M., Sapuan M., Jawaid M., Mansor M. R. Influence of fibre contents on mechanical and thermal properties of roselle fibre reinforced polyurethane composites//Fibers and Polymers 2017. V.18. №7. Р. 1353–1358.

14. Kolesnikov A.A., Dedov A.V., Sharova L.I. Abradability of thermoplastic polyurethane for flexible fuel storage tanks//Polym. Sci. Series D. 2019. V.12. №3. Р. 341–343.

15. Колесников А.А., Дедов А.В., Назаров В.Г., Доронин Ф.А., Кондратов А.П. Моделирование кинетики износа резиновых валов полиграфического оборудования//Известия высших учебных заведений. Проблемы полиграфии и издательского дела. 2020. №1. С. 19–22.

16. Колесников А.А., Дедов А.В., Назаров В.Г. Абразивный износ прорезиненных валов полиграфического оборудования после контакта с органическим растворителем// Известия высших учебных заведений. Проблемы полиграфии и издательского дела. 2020. №2. С. 41–44.

17. Колесников А.А., Дедов А.В., Рыбаков Ю.Н., Кюннап Р.И. Влияние солнечного излучения на абразивный износ полимерных резервуаров склада временного хранения топлива//Материаловедение. 2020. №8. С. 14–18.

18. Колесников А.А., Дедов А.В., Рыбаков Ю.Н., Кюннап Р.И. Истираемость термопластичного полиуретана после контакта с бензином //Все материалы. Энциклопедический справочник. 2020. №5 С. 30–34.

19. Debaets P., VanParys F., Kalacska G. The friction and wear of different polymers under high load conditions//Synthetic lubrication. 2002. V.18. №1. Р. 109–118.

20. Myshkin N.K., Petrokovets M.I., Kovalev A.V. Tribology of polymers: Adhesion, friction, wear, and mass-transfer//Tribology International 2005-2006. V.38. №11–12. Р. 910–920.

21. Myshkin N.K., Grigoriev A.Ya. Equipments and materials for tribotesting in open space on International Space Lab//Tribology in Industry 2011 V.33. №1. Р. 43–46.


Review

For citations:


Kolesnikov A.A., Bokova E.S., Dedov A.V. The effect of salt mist on the abrasion of thermoplastic polyurethanes. Plasticheskie massy. 2024;(1):37-39. (In Russ.) https://doi.org/10.35164/0554-2901-2024-01-37-39

Views: 247


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 0554-2901 (Print)