Ве молиме користете го овој идентификатор да го цитирате или поврзете овој запис: http://hdl.handle.net/20.500.12188/9311
Наслов: ВЛИЈАНИЕ НА РАЗЛИЧЕН ТИП НА САНАЦИЈА ВО КОЛОВОЗНАТА КОНСТРУКЦИЈА, ВРЗ ПОСТИГНУВАЊЕ НА КВАЛИТЕТ НА РАМНОСТА НА ВОЗНАТА ПОВРШИНА
Authors: Мијоски, Г., Топаловска Анѓелевска, М., Николиќ, Л., Бајрами, Н.
Keywords: longitudinal roughness, pavement structure, reconstruction, rehabilitation
Issue Date: ное-2019
Publisher: FMRC 2019 – Прв Македонски конгрес за патишта 2019, Book of Proceedings, pp. 296 - 305, ISBN 978-608-4510-38-3 COBISS.MK-ID 111528202
Проект: „Application of PmB in the base asphalt layers of the pavement construction at the roads with the heavy traffic loading and motorways“
Conference: Book of Proceedings of FMRC 2019 – Прв Македонски конгрес за патишта 2019, pp. 296 - 305, ISBN 978-608-4510-38-3 COBISS.MK-ID 111528202, Skopje, 7-8 November 2019
Abstract: There are more factors from bond vehicle - road condition that have significant impact on driving comfort on the road. One of indicators in this bond is roughness of roadway surface (smoothness), and with this indicator safe and comfortable driving at designed speed on particular roadway is ensured. One of the most important surface parameters of every roadway is longitudinal roughness which is functionally connected with maximum allowed driving speed. Longitudinal roughness, expressed through International Roughness Index (IRI) is significant parameter which have to be achieved on pavement surface.The occurrence of excessive plastic deformation, fatigue and the appearance of cracks in the pavement structure are factors that require on-going quest for a technical solution in order to obtain high quality flexible road construction especially for highways and roads with very heavy traffic load. Applying a design solution by overlaying or one-layer upgrading of pavement structure, is usually limiting factor in achieving of the required roughness.
URI: http://hdl.handle.net/20.500.12188/9311
Appears in Collections:Faculty of Civil Engineering: Journal Articles

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