Tensar H-Series geogrid is a premium solution designed to reinforce and stabilise unbound granular layers in roads, platforms, and other trafficked areas
Tensar H-Series Geogrid are engineered to provide dependable ground stabilisation where performance, efficiency, and cost control are equally important. Developed using Tensar’s proven geogrid design principles, the H-Series increases the mechanical interaction between aggregate and subgrade to create a stable, load-bearing layer under construction and long-term service conditions.
The geogrid’s varied aperture configuration promotes effective aggregate confinement across a range of commonly used fill materials, improving compaction quality and resistance to deformation under repeated loading. This results in improved layer stiffness and reduced reliance on excessive fill depths, supporting more efficient material use and streamlined construction programmes.
Well suited to roads, pavements, working platforms, and general infrastructure projects, Tensar H-Series geogrids offer a practical stabilisation solution that delivers consistent performance while helping manage project budgets and build times.
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Frequently Asked Questions
H-Series geogrid features a unique aperture design that enhances stabilisation in all directions. Its black finish also makes it visually distinct on site, which can be beneficial for installation clarity or specific project requirements.
It’s ideal for applications such as roading, rail formation, heavy-duty working platforms, and pavement construction over soft or variable subgrades.
By increasing aggregate interlock and load spreading, it reduces the required depth of granular layers – saving time, material, and cost while delivering long-term structural performance.
Benefits & Features
- Advanced multi-aperture geometry for optimal aggregate confinement
- Reduces aggregate volumes and speeds up construction
- Improves load distribution and long-term pavement performance
- Engineered for use in roads, rail, working platforms, and soft ground
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