Skip to main content

Polish road strengthened by Tensar

Consultants have specified Tensar techology in the rebuilding of a deteriorating Polish highway in order to meet current standards. The use of Tensar geogrids enabled consultants Drotest and Dro-konsult Warsaw to create a stable asphalt pavement quicker and more economically than using conventional construction methods, says Tensar. The 40km long road, which connects Bartoszyce and Ketrzyhn, had exceeded its design life and clearly showed its structural weakness with bad rutting, extensive fatigue crackin
July 31, 2012 Read time: 2 mins
Consultants have specified 340 Tensar techology in the rebuilding of a deteriorating Polish highway in order to meet current standards.

The use of Tensar geogrids enabled consultants 1438 Drotest and Dro-konsult Warsaw to create a stable asphalt pavement quicker and more economically than using conventional construction methods, says Tensar.

The 40km long road, which connects Bartoszyce and Ketrzyhn, had exceeded its design life and clearly showed its structural weakness with bad rutting, extensive fatigue cracking and surface deformation. The 6m wide carriageway was carried on a narrow fill embankment with minimum shoulders and flanked by deep ditches.

Conventional techniques of installing a thick pavement structure to improve the road bearing performance would have required widening the embankment to carry the additional construction. This was an expensive option and not economically possible.

Instead, the Tensar technical design team proposed the installation of a lean concrete base carrying Tensar geogrid composite reinforced asphalt layers. Over the concrete, the contractors PBDiM Minsk Mazowiecki laid a bituminous bond coat, and rolled out the Tensar ARG composite (geogrid bonded to a paving fabric) which was then brushed flat.

Over the concrete road base they laid a new binder course followed by wearing layers of asphalt. The function of the Tensar geogrid composite was to restrict any shrinkage cracking from the concrete layer from reflecting into the asphalt. In addition, its load bearing capability will provide fatigue resistance for the asphalt layers.

For more information on companies in this article

Related Content

  • Mongolia’s capital Ulaanbaatar is redeveloping its airport
    August 23, 2016
    Mongolia’s economy is growing fast, with capital Ulaanbaatar the centre for activity. Being landlocked, the country depends heavily on aviation to carry passengers and cargo. The existing Chinggis Khaan International Airport was built in 1956 and upgraded in 1987 and 1997 for international traffic. But the old airport cannot meet demands and boosting the country’s capacity to handle flights is essential. The New Ulaanbataar International Airport (NUBIA) will triple passenger capacity to approximately 3
  • Huesker: the case for geosynthetics
    April 19, 2022
    Huesker, a global manufacturer of geosynthetics and technical textiles, explains how incorporating geosynthetic material can boost a project’s environmental credentials*.
  • Wirtgen: low-emission recycling near Legoland
    March 22, 2024
    Wirtgen, Vögele and Hamm were on a section of the busy E45 highway close to the famous Legoland resort at Billlund, Denmark.
  • Innovative advances in warm Mix Asphalts
    February 1, 2013
    Rising energy costs and increased awareness of safety and environmental issues have encouraged the development of Warm Mix Asphalts (WMA), which are typically produced at temperatures of between 130°C and 145°C, compared with around 175°C for traditional Hot Mix Asphalt (HMA). WMAs are regularly used in many European countries, as well as both North and South America. The three most common ways to lower the working temperature of asphalt are: a) foaming technologies; b) wax additives; and c) chemical (surfa