Complex-Modified Road Asphaltic Steels of Increased Durability

V. I. BratchunDonbas National Academy of Civil Engineering and ArchitectureV. L. BespalovDonbas National Academy of Civil Engineering and ArchitectureYe. A. RomasyukDonbas National Academy of Civil Engineering and ArchitectureD. V. GulyakDonbas National Academy of Civil Engineering and ArchitectureO. N. NarygnayaDonbas National Academy of Civil Engineering and Architecture
Abstract: The physical and mechanical properties of complex-modified ethylene glycidylacrylate hot asphalt concrete containing surface-activated 0,7 % by weight of ethylene glycidylacrylate mineral materials (crushed stone, sand, mineral powder in fine-grained asphalt concrete type B) and modified petroleum road bitumen (2 % wt. ethylene glycidylacrylate together with 0,2 % wt. polyphosphoric acid) have been determined and investigated. The asphalt polymer concrete modified holistically by ethylene glycol acrylate is characterized by Marshall resistance, Р = 30 kH; higher resistance to rutting formation, 23…36 % less than unmodified asphalt concrete; water resistance after 90 days of water saturation is Kws = 0,91; the frost resistance coefficient after 100 cycles is F = 0,88, the coefficient of heat aging after 2000 hours (the temperature of heating is 75 °C under UV irradiation) is Kag = 1,2.

Keywords: asphalt polymer concrete, ethyleneglycidylacrylate, composition and structure, physical and mechanical properties.

Pages: 133-142.

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For citation:
For citation: Bratchun, V. I.; Bespalov, V. L.; Romasyuk, Ye. A. [et al.]. Complex-Modified Road Asphaltic Steels of Increased Durability. – Text : electronic. – In: <em>Modern Industrial and Civil Construction</em>. – 2019. – Vol. 15, N 3. – Р. 133-142. – URL: https://donnasa.ru/publish_house/journals/spgs/2019-3/03_bratcun_bespalov_romasyuk_gulyak_narygnaya.pdf (date of access: 22.12.2024). – ISSN 1993-3495.


Issue Cover
Vol. 15, N 3 (2019)
Journal: Modern Industrial and Civil Construction
Publish house: Donbas National Academy of Civil Engineering and Architecture