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Riverside urban construction site with cranes, dock works, and apartment buildings on weak, soft subsoil stabilised with geogrids.

Reinforcement and stabilisation of paved roads

Stabilise and reinforce paved roads: geogrid solutions for base and subbase courses

Stabilisation and reinforcement of paved roads involves the integration of geosynthetic layers - typically geogrids or composite geosynthetics - into the unbound base or subbase course of a road to extend its service life and reduce maintenance costs. Repeated traffic loading causes progressive rutting, reflective cracking and structural fatigue in unreinforced pavements. Secugrid® and Combigrid® geosynthetics from Naue distribute loads more effectively, reduce strain in the pavement structure and prevent premature failure.

At a glance

  • Application: Integration of geosynthetic stabilisation and reinforcement layers into paved road structures to extend service life, reduce reflective cracking and lower maintenance costs.
  • Products: The primary Naue products are Secugrid®, Combigrid®, Secutex®.
  • Savings potential: Up to 30 - 50 % reduction in base course aggregate.
  • Standards/guidelines: Design follows AASHTO 1993/Mechanistic-Empirical Pavement Design Guide, EBGEO, BS 8006-1, RStO, ZTV E-StB.
  • Typical projects: Typical projects include highways and motorways, urban arterial roads, industrial roads (logistics areas, airports, ports, warehouses).

Geosynthetic stabilisation and reinforcement of paved roads: challenges, solutions and results

Challenges

  • Reflective cracking propagates through asphalt overlays
  • Progressive rutting at subgrade/subbase interface under heavy and repeated axle loads
  • High aggregate consumption with associated transport costs
  • Fines migration from weak subgrade into base course (fouling)
  • Tight construction schedules with limited road closure windows

Solution

  • Secugrid® geogrid installed within the base or subbase course helps limit crack propagation through the pavement structure. Combigrid® geocomposite distributes wheel loads laterally across a larger subgrade area
  • Geogrid stabilisation and reinforcement allows base course thickness reduction between 30 to 50%
  • Combigrid® combines geogrid stabilisation and reinforcement with integrated Secutex® separation / filtration layer
  • Wide-roll Combigrid® (4.75 m) enables rapid lane-by-lane installation

Results

  • Significant reduction in reflective cracking frequency, lowering resurfacing frequency
  • Rut depth reduced; road service life extended by up to 2 x vs unreinforced design
  • Geosynthetic solution more than EUR 100,000 cheaper per km vs conventional design (source: Naue cost comparison)
  • Long-term structural integrity preserved; subgrade contamination prevented
  • Faster reinstatement of traffic and reduced on-site logistics

Typical applications for stabilisation and reinforcement of paved roads

Naue geosynthetic solutions perform in every scenario where structural pavement life, load capacity and economic efficiency are critical.

  • Paved roads motorway

    Highways and urban roads

    Reinforced base courses for heavily trafficked motorways and roads subject to bus loads, and variable subgrade conditions.

  • Storage yards

    Logistics and industrial access

    Stable paved surfaces for HGV and forklift traffic at warehouses, ports and industrial estates on variable or weak subgrades.

  • Construction site roads

    Road rehabilitation

    Geogrid layer beneath base or subbase course prevents reflective cracking from propagating up to the new surface course.

  • Paved roads

    Roads in frost-prone zones

    Geosynthetic reinforcement reduces the impact of freeze-thaw cycles on base course integrity and minimises post-frost maintenance.

Road construction site with heavy machinery and workers installing Naue nonwoven geotextiles and geogrids for basecourse stabilisation.
Road construction site with heavy machinery and workers installing Naue nonwoven geotextiles and geogrids for basecourse stabilisation.

Robust in installation - reliable in performance

Paved road projects demand products that perform reliably under demanding site conditions. Secugrid® geogrids and Combigrid® composite geosynthetics are designed to withstand the rigours of installation: High mechanical stresses during placement and compaction of aggregate. The monolithic robust polypropylene flat bars of Secugrid® and Combigrid® resist installation damage and maintain structural integrity throughout the pavement life.

Practical advantages for site crews:

  • Lower installation risk because Combigrid® maintains its position and performance during construction.
  • Fewer truck movements and less on-site logistics.
  • Wide roll format (4.75 m) reduces installation time and minimises on-site joints.
  • Combigrid® eliminates the need to handle two separate layers, reducing installation time.
  • Compatible with standard road construction equipment and compaction plant.

Step-by-step installation sequence

  1. Grade and level the prepared subgrade surface.
  2. Unroll Secugrid® or Combigrid® composite directly onto the subgrade with a minimum 300 mm overlap at longitudinal and transverse joints.
  3. Place aggregate base course over the geosynthetic.
  4. Compact aggregate to the specified density using vibrating roller or other compaction equipment.
  5. Continue with paving or surface course operations as per project specification.

Stabilisation and reinforcement of paved roads: frequently asked questions

Stabilisation and reinforcement in paved roads involves the integration of geosynthetic layers - such as Secugrid® geogrids or Combigrid® geocomposites - into the base or subbase course of a road. The geosynthetic distributes axle loads, reduces rutting and prevents reflective cracking, extending pavement service life and reducing maintenance expenditure.

Specify Secugrid® where only stabilisation and reinforcement are required and the subgrade CBR is at or above 3 %. Specify Combigrid® where the subgrade CBR is below 3 % and separation or filtration is also needed. Combigrid® combines all four functions in a single layer, simplifying installation and reducing construction time.

Key standards include AASHTO 1993 and the AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG) (US and international); EBGEO (Germany); BS 8006-1 (UK); RStO and ZTV E-StB (Germany). Naues Portal’s PavedRoad - AASHTO Calculator incorporates the AASHTO 1993 design methodology. For project-specific designs, contact Naue’s Engineering & Design Department (EDD).

On a 1,000 m road section, the geosynthetic stabilised and reinforced solution has been shown to save more than EUR 100,000 compared with conventional aggregate excavation and replacement (source: Naue cost comparison study).

The prepared subgrade is graded and levelled. The Secugrid® geogrid or Combigrid® roll is unrolled directly onto the subgrade, with a typical minimum 300 mm overlap at longitudinal and transverse joints. Aggregate base course is then placed and compacted over the geosynthetic using standard equipment. No specialist tools are required. Combigrid® eliminates the installation of a separate geotextile.

By extending the service life of the road, geosynthetic stabilisation and reinforcement can reduce the frequency of rehabilitation cycles and decrease asphalt waste. Naue geosynthetics are manufactured in ISO-certified facilities and support circular construction principles.

Yes. The AASHTO Mechanistic-Empirical design guide explicitly incorporates geosynthetic reinforcement parameters. FHWA-published WTI research validated Secugrid® and Combigrid® performance in field conditions. In Europe, EBGEO (Germany) and BS 8006-1 (UK) provide design frameworks. Naue can provide product data in formats required by all major national approval bodies.

Secugrid® and Combigrid® have been used in thousands of paved road projects globally for decades, from national highways in North America and Europe to logistics parks in Asia and rehabilitation works in the Middle East. Reference projects include Highway 21 (Saskatchewan, Canada), LRT3 Federal Route 5 (Malaysia) and frost road rehabilitation projects across northern Europe. Please also see our case studies for project references.

Western Transportation Institute (WTI) field testing published with the US Federal Highway Administration (FHWA) confirmed that welded geogrids, including Secugrid® and Combigrid®, achieved the highest rutting resistance of all products evaluated in a comparative study. This independent validation underpins AASHTO Mechanistic-Empirical design compatibility and supports acceptance by road authorities in the US, UK and Australia.

Yes. Secugrid® and Combigrid® are designed for both new-build road base courses and road rehabilitation projects.

Paved road reinforcement: project-specific design using recognised standards

The design of geosynthetic systems for paved roads follows recognised national and international standards. The Naue Portal’s PavedRoad - AASHTO Pavement Design Calculator allows engineers to determine the optimum geosynthetic solution quickly, in compliance with standards and with full auditability.

  • AASHTO 1993/M-E: AASHTO 1993 flexible pavement design method and AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG). Applicable to US, Canadian and international road projects.
  • EBGEO: Recommendations for design of earth structures using geosynthetic reinforcement. Primary design guideline in Germany and widely referenced across Central European projects.
  • BS 8006-1: Code of practice for strengthened / reinforced soils and other fills. Standard reference for UK road construction and reinforcement projects.
  • RStO/ZTV E-StB: German guideline for the standardisation of pavement structures of traffic areas and additional technical conditions of contract and directives for earthworks in road construction. Applicable to German road construction projects.
  • EN 13249: European standard specifying characteristics for geogrids required in road construction applications or other trafficked areas.

Construction site with stabilising Secugrid® laid out over the ground beside a brick building.
Construction site with stabilising Secugrid® laid out over the ground beside a brick building.

Stabilisation and reinforcement of paved roads: benefits

The following system benefits come directly from how the Naue products work within the layer structure:

  1. Stiffer composite base/subbase course through geogrid-aggregate interlock.
  2. Reduced rutting by lateral restraint of aggregate material.
  3. Mitigation.
  4. Integrated separation and filtration layer (Combigrid®) prevents intermixture of fines from subgrade with coarse base course material.

Downloads and services

  • Geogrids enables access to Europe’s second biggest waterway junctionYouTubeWatch

Geotechnical software

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  • Compliant with industry standards: aligns with AASHTO, and other engineering guidelines.