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Received 17.01.2025

Revised 21.05.2025

Accepted 24.06.2025

Retrieved from Iss. 117, P. 2, 2025

Pages 181 -190

  • 230 Views

Suggested citation

Styozhka, V., & Shnaider, M. (2025). ANALYSIS OF HORIZONTAL ROAD MARKING TECHNOLOGIES. Automobile Roads and Road Construction, (117.2), 181-190. https://doi.org/10.33744/0365-8171-2025-117.2-181-190

ANALYSIS OF HORIZONTAL ROAD MARKING TECHNOLOGIES

Vitaliy Styozhka Mykhailo Shnaider

Abstract

In order to understand the structure of types, manufacturers, and methods of applying horizontal road markings in the total number of marking machines in Ukraine, it was decided to analyse open tenders, information about which is publicly available. It should be noted that the largest volumes of horizontal road markings are applied on public roads and in large settlements. When considering public roads, the main volume of horizontal road markings is applied on roads of national importance, since local roads sometimes do not have a solid surface. For this reason, only roads of national importance were taken into account during the analysis. As a result, 110 public procurements in 20 regions of our country, which took place between 2023 and 2024, were analysed. The study was conducted using the Prozorro electronic public procurement system. The above number of analysed procurements for the operational maintenance of motorways included those procurements that contained information on the provision of services for applying horizontal road markings. During the study, information about the mechanisms (techniques) used for applying road markings and provided in the documents of the tender winners with whom contracts were signed was used

Keywords:

horizontal road markings, paint application method, self-propelled marking machine, trailer-mounted marking machine, manual marking machine, road paint, hot-applied plastic, cold-applied plastic, spray plastic

References

  1. DSTU 2587:2021. (2021). Road safety. Road marking. General technical specifications. Kyiv: State Enterprise “UkrNDNC”.
  2. DSTU 8749:2017. (2017). Road safety. Barriers and traffic organization at road works sites. Kyiv: State Enterprise “UkrNDNC”.
  3. SOU 42.1-37641918-116:2014. (2014). Paint for horizontal road marking of highways. Technical requirements and test methods. Kyiv: State Agency for Restoration and Development of Infrastructure of Ukraine.
  4. Mozghovyi, V.V., Onyshchenko, A.M., Harkusha, M.V., & Bilan, O.O. (2011). Monitoring of pavement condition for planning road repair works, including for the road asset management system. Collection of Scientific Works “Roads and Bridges”, 13, 76-88. 
  5. DSTU 2587-94. (1994). Road marking. Technical requirements. Control methods. Application rules. Kyiv: State Department of Traffic Safety of the Ministry of Internal Affairs of Ukraine.
  6. SOU 45.2-00018112-018:2007. (2007). Road safety. Materials for horizontal marking with retroreflective properties. General technical requirements. Kyiv: State Agency for Restoration and Development of Infrastructure of Ukraine.
  7. DSTU 2587:2010. (2010). Road safety. Road marking. General technical requirements. Control methods. Application rules. Kyiv: State Committee of Ukraine for Technical Regulation and Consumer Policy.
  8. SOU 42.1-37641918-095:2012. (2012). Standards for material consumption for horizontal road marking works on highways. Kyiv: State Agency for Restoration and Development of Infrastructure of Ukraine.
  9. Hofmann GmbH. (n.d.). Hofmann marking technology. Retrieved from https://www.hofmannmarking.de.
  10. Graco Inc. (n.d.). Graco road marking equipment. Retrieved from https://www.graco.com.
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https://doi.org/10.33744/0365-8171-2025-117.2-181-190

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