Peculiarities of non-rigid pavement inspection in the design of repair measures using cold recycling technology

published:
Number: Issue 28(2023)
Section: Construction and civil engineering
The page spacing of the article: 59–67
Keywords: highway, non-rigid pavement, instrumental inspection, cold recycling
How to quote an article: Serhii Holovko. Peculiarities of non-rigid pavement inspection in the design of repair measures using cold recycling technology. Dorogi і mosti [Roads and bridges]. Kyiv, 2023. Iss. 28. P. 59–67 [in Ukrainian].

Authors

M.P. Shulgin State Road Research Institute State Enterprise - DerzhdorNDI SE, Kyiv, Ukraine
https://orcid.org/0000-0002-9517-7049

Summary

Problem Statement. Observation of the performance of objects restored by cold recycling technology shows that more attention should be paid to diagnosing the condition of existing pavement and predicting the processes that cause premature deterioration.

Purpose. To find solutions to clarify the condition of the existing pavement and to determine in more detail the factors of deterioration.

Research methods. Analytical and experimental with the use of computer modeling.

Conclusions. Based on the results of the research, an algorithm for conducting the survey was developed, which consists of two consecutive stages. This algorithm is based on the results of the first stage of the survey that provides that not only data are collected, but also envisages that a program for the second stage of the survey is drawn up. Based on the results of the second stage of the survey, a plan diagram of the same type of road sections is formed, the need for additional preparatory work to eliminate local areas with deterioration is determined, and constructive and technological solutions for the repair of pavement using cold recycling technology are developed with the determination of the depth of milling, the amount and composition of stone materials that are additionally added to the mixture, the composition of the binder, etc. 

References

  1. DBN V.2.3-4:2015 Avtomobilni dorohy. Chastyna I. Proektuvannia. Chastyna II. Budivnytstvo [State Building Norms (DBN V.2.3-4:2015) Highways. Part I. Design. Part II. Building]. Kyiv, 2016. 104 p. (Information and documentation) [in Ukrainian].
  2. DSTU 8824:2019 Avtomobilni dorohy. Vyznachennia intensyvnosti rukhu ta skladu transportnoho potoku [State Standard of Ukraine (DSTU 8824:2019) Automobile roads. Determination of traffic intensity and composition of traffic flow]. Kyiv, 2019. 72 p. (Information and documentation) [in Ukrainian].
  3. SOU 45.2-00018112-080:2011 Avtomobilni dorohy. Otsinka ta reiestratsiia stanu dorozhnikh pokryttiv ta tekhnichnykh zasobiv avtomobilnykh dorih avtomatyzovanymy systemamy videodiahnostyky [Standard of organization of Ukraine (SOU 45.2-00018112-080:2011) Automobile roads. Assessment and registration of the condition of road surfaces and technical means of highways by automated video diagnostic systems]. Kyiv, 2011. 54 p. (Information and documentation) [in Ukrainian].
  4. DSTU 8976:2020 Materialy dorozhni, vyhotovleni za tekhnolohiieiu kholodnoho resaiklinhu. Tekhnichni umovy [State Standard of Ukraine (DSTU 8976:2020) Road materials manufactured using cold recycling technology]. Kyiv, 2020. 72 p. (Information and documentation) [in Ukrainian].
  5. DSTU 8977:2020 Materialy dorozhni, vyhotovleni za tekhnolohiieiu kholodnoho resaiklinhu. Metody vyprobuvannia [State Standard of Ukraine (DSTU 8977:2020) Road materials, produced by cold recycling technology. Test methods]. Kyiv, 2020. 19 p. (Information and documentation) [in Ukrainian].
  6. DSTU B V.2.1-9:2016 Hrunty. Metody polovykh vyprobuvan statychnym i dynamichnym zonduvanniam [State Standard of Ukraine (DSTU B V.2.1-9:2016) Soils. Methods of field tests by static and dynamic probing]. Kyiv, 2016. 62 p. (Information and documentation) [in Ukrainian].
  7. DSTU B V.2.3-42:2016 Avtomobilni dorohy. Metody vyznachennia deformatsiinykh kharakterystyk zemlianoho polotna ta dorozhnoho odiahu [State Standard of Ukraine (DSTU B V.2.3­42:2016) Automobile roads. Methods of determining the deformation characteristics of the ground surface and road surface]. Kyiv, 2016. 67 p. (Information and documentation) [in Ukrainian].
  8. HBN V.2.3-37641918-559:2019 Dorozhnii odiah nezhorstkyi. Proektuvannia (Departmental Building Norms (HBN V.2.3-37641918-559:2019) Non rigid pavement. Designing). Kyiv, 2019. 58 p. (Information and documentation) [in Ukrainian].
  9. Serhii Holovko. Analysis of non-rigid pavement design options using the hierarchy analysis method. Dorogi і mosti [Roads and bridges]. Kyiv, 2022. Iss. 25. P. 31–39. DOI: https://doi.org/10.36100/dorogimosti2022.25.031 [in Ukrainian].
  10. Holovko S.K. Ratsionalni sposoby povtornoho vykorystannia asfaltobetonu pry rekonstruktsii avtomobilnykh dorih [Rational methods of reuse of asphalt concrete in the reconstruction of highways]. PhD (Ing.).  Kyiv, 1998. 203 p. [in Ukrainian].
  11. Sergey Golovko New approaches to increase the capitality of pavements in their repair // Dorogi і mosti [Roads and bridges]. Kyiv, 2020. Iss. 22. P. 86–94. DOI: https://doi.org/10.36100/dorogimosti2020.22.086 [in Ukrainian].
  12. Zhdaniuk V., Sybilskyi D. Retsykliuvannia dorozhnikh odiahiv (Recycling of road clothes). Ch. 1–3. Kharkiv, 2006. 114 p. [in Ukrainian].
  13. R V.2.7-37641918-887:2017 Rekomendatsii z pidboru skladu ta zastosuvannia bitumomineralnykh sumishei z vykorystanniam asfaltobetonnoi krykhty [Recommendations (R V.2.7‑37641918-887:2017) Recommendations for selecting the composition and application of bituminous-mineral mixtures using asphalt concrete crumb].  Kyiv, 2017. 54 p. (Information and documentation) [in Ukrainian].
  14. TTR 42.1-37641918-418:2017 Typovyi tekhnolohichnyi rehlament na vyhotovlennia bitumomineralnykh sumishei z vykorystanniam asfaltobetonnoi krykhty [Standard technological regulations for the production of bituminous-mineral mixtures using asphalt concrete crumb]. Kyiv, 2017. 32 p. (Information and documentation) [in Ukrainian].