Журналы →  Chernye Metally →  2024 →  №11 →  Назад

Rolling and other Metal forming processes
Название Improving the mechanical characteristics of water supply and sewerage pipes in urban areas
DOI 10.17580/chm.2024.11.12
Автор O. S. Chibukhchyan, G. S. Chibukhchyan
Информация об авторе

National Polytechnic University of Armenia, Yerevan, Republic of Armenia

O. S. Chibukhchyan, Cand. Eng., Head of Innovation Service, Acting Head of the Dept. of Mechanical Engineering and Automation Technology, e-mail: hovhannesch@gmail.com
G. S. Chibukhchyan, Cand. Eng., Associate Prof., Dept. of Transport Vehicles, e-mail: grigor.chibukhchyan@gmail.com

Реферат

The drainage (sewage) systems in Yerevan were built more than 50 years ago and do not meet modern environmental standards. Outdated infrastructure often leads to blockages, leaks and accidents, which can cause significant economic losses, as well as damage to both the environment and public health. Practice shows that sewerage pipes often become critical objects that predetermine the sanitary condition and the risk of biological pollution of the environment, increasing the risk of various infectious diseases. Reliability and environmental safety of water supply and sewerage pipelines are one of the main requirements for the water supply and sewerage systems of cities and towns. The practice of operating urban water supply and sewerage systems (sewage) shows that frequent disruptions to normal operation are mainly associated with damage to sections of urban water supply and sewerage networks, which are the most functionally significant and vulnerable elements. This requires the use of new effective technologies to improve the mechanical properties of the inner walls of pipelines without harming the environment. The results of experiments on ultrasonic double-sided hardening for thin-walled plates made of Kh18N9T and 8011 materials measuring 200×400 mm are presented. The surface layer processing depth was 194 μm for Kh18N9T steel and 168.5 μm for 8011 material. In practice, it is advisable to use thin-walled plates made of Kh18N9T material with double-sided ultrasonic hardening (with a hardened layer depth of up to 194 μm) to increase the strength and corrosion resistance of the inner walls of metal pipelines. This will significantly reduce the cost of repair and restoration work on the water supply and sewerage system.
The study was carried out with the financial support of the Committee on Higher Education and Science of the Republic of Armenia (Scientific project No. 22YR-2D040).

Ключевые слова Sewerage system, pipeline, ultrasonic hardening, mechanical properties, damage
Библиографический список

1. The future we don’t want. Available at: https://www.c40.org/ru/what-we-do/scaling-upclimate-action/adaptation-water/the-future-we-dont-want/water-availability/ (accessed: 21.04.2024).
2. Water Resources Management in Armenia National Report. Available at: https://www.gwp.org/globalassets/global/gwp-cacena_files/ru/pdf/armenia.pdf/ (accessed: 25.04.2024).
3. Report 2023. Available at: https://www.veolia.am/ (accessed:07.05.2024).
4. Huang Rongmin, Zhang Ye, Liu Ka et al. Distribution characteristics of municipal rainwater and sewer pipes defects in pipeline network inspection in W city. China Water Supply and Drainage. 2023. No. 39 (2). pp. 87–93.
5. Boleev A. A., Potolovsky R. V., Akimov O. Yu. Study of the influence of pH and salt content of water on the corrosion rate of pipelines. Nauchny potentsial regionov na sluzhbu modernizatsii. 2012. No. 2 (3). pp. 103–105.
6. Wang Y., Cheng G., Wu W., Li Y. Role of inclusions in the pitting initiation of pipeline steel and the effect of electron irradiation in SEM. Corrosion Science. 2018. Vol. 130. pp. 252–260.
7. Chukhin V. A., Andrianov A. P. Analysis of causes of accelerated corrosion of steel pipelines in hot water supply systems. Sistemnye tekhnologii. 2021. No. 38. pp. 66–71.
8. Loto R. T. Pitting corrosion evaluation and inhibition of stainless steels: A review. Journal of Materials and Environmental Science. 2015. Vol. 6, Iss. 10. pp. 2750–2762.
9. Venkittaraman A., Roberts P. M., Sharma M. M. Ultrasonic removal of near-wellbore damage caused by fines and mud solids. SPE Drilling & Completion. 1995. Vol. 10. pp. 193–197. DOI: 10.2118/27388-PA
10. Frizzell L. A. Biological effects of acoustic cavitation. Ultrasound: Its Chemical, Physical and Biological Effects. New York : VCH Publishers, 1988. 336 p.
11. Mason T. J., Joyce E., Phull S. S., Lorimer J. P. Potential uses of ultrasound in the biological decontamination of water. Ultrasonics Sonochemistry. 2003. Vol. 10. pp. 319–324.
12. Akopyan G. S. Modern problems of water sewerage systems and possible ways of their development. Vestnik nauki. 2024. No. 6 (75). Vol. 1. pp. 1598–1609.
13. Qiu Zhihai. Analysis of quality problems in the construction of Shenzhen drainage networks and discussion of quality control measures and countermeasures. Tekhnicheskiy nadzor za okhranoy vodnykh resursov. 2017. No. 25 (4). pp. 20–21.
14. Wang D., Terekhov L. D. Analysis of accidents in sewerage pipelines of an inland city in Northern China. Izvestiya Perterburgskogo universiteta putey soobshcheniya. 2024. Vol. 21, Iss. 1. pp. 113–124. DOI: 10.20295/1815-588X-2024-01-113-124
15. Sangave P. C., Pandit A. B. Ultrasound and enzyme assisted biodegradation of distillery wastewater. J. Environ Manage. 2006. Vol. 80. No. 1. pp. 36–46.
16. Ultrasonic cleaning equipment for ultimate cleaning power. Available at: http://pdf.directindustry.com/pdf/fusion-incorporated/ultrasonic-cleaning-equipment-ultimatecleaning-power/53329–314369.html (accessed: 10.08.2024).
17. Chibukhchyan O. S. Increasing the strength of thin-walled machine parts by double-sided ultrasonic hardening of their surfaces. Vestnik natsionalnogo politekhnicheskogo universiteta Armenii. Mekhanika, mashinovedenie, mashinostroenie. 2020. No. 1. pp. 69–81.
18. Agbalyan S. G., Zakaryan A. A., Balasanyan B. S. et al. Method for producing high-strength titanium foil. Patent of Armenia, No. 3255А. Applied: 14.09.2018. Published: 01.02.2019
19. Balasanyan B. A., Arshakyan A. L., Balasanyan A. B. et al. Method of manufacturing an ultrasonic transducer. Patent of Armenia, No. 3265А. Applied: 14.09.2018. Published: 01.02.2019.

Language of full-text русский
Полный текст статьи Получить
Назад