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BASELOK® FABGRID®

FABGRID

BaseLok® Fabgrid® Solution

100% US Sourced & Manufactured
60+ Years Proven Technology
BaseLok FabGrid is produced with our unique thermal lamination process. It combines high-strength BaseLok Biaxial (BX) or Triaxial (BT) Geogrid and a non-woven geotextile. FabGrid offers the confinement properties of geogrid and the filtration/separation properties of a non-woven geotextile fabric providing the designing engineers a powerful new tool in their arsenal to combat weak soils..

  • Enhanced Separation: Prevents the migration of silty, fine soil particles into the expensive aggregate section, maintaining layer integrity.
  • Improved Drainage: Allows efficient water flow while retaining soil particles.
  • High Durability: Strong fabric structure ensures long-term performance in tough conditions.
  • Reduced Risk of Layer Separation: Installing geotextile and geogrid separately is costly and inefficient. Thermally bonded FabGrid creates a uniformly bonded geocomposite that eliminates separation of the two products, and allowing aggregate base to properly interlock with the geogrid.
  • Cost Efficiency: Reduces material usage and ongoing maintenance costs.
  • Proven Testing: Texas A&M University research concludes that BaseLok FabGrid outperforms single layer geogrid and geotextile placed separately, reducing overall rut depth.
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Application Types

How BaseLok Fabgrid Solution Works 

There is a growing demand for infrastructure solutions that are not only cost-effective and fast to deploy but also sustainable and adaptable to challenging ground conditions. At Baselok, we are dedicated to delivering advanced geosynthetic solutions that meet these evolving construction requirements.

Baselok FabGrid is a high-performance geotextile-based reinforcement solution designed to provide superior separation, filtration, and stabilization. Manufactured using advanced fabric technology, it effectively prevents the mixing of subgrade soil with aggregate layers while maintaining excellent drainage characteristics. Compared to conventional ground improvement methods, Baselok FabGrid offers enhanced durability, improved load distribution, and long-term performance even in weak soil conditions. 

Its flexible structure allows it to adapt to varying terrains, making it highly effective across a wide range of soil types and site conditions. Designed for applications such as roads, railways, embankments, drainage systems, and working platforms, Baselok FabGrid enhances structural integrity while reducing settlement and maintenance requirements. 

It also helps optimize material usage, resulting in cost savings and reduced environmental impact. With proven reliability across infrastructure, industrial, and transportation projects, Baselok FabGrid provides an efficient and sustainable solution—ensuring improved ground performance, extended service life, and consistent results in demanding environments..
  • Superior Fine-Particle Retention: Blocks migration of silty, fine soils into the expensive aggregate section.
  • True Composite Bond: Thermally bonded construction eliminates separation between geotextile and geogrid, letting interlock properly with grid.
  • Eliminates Dual-Product Installation: Replaces the cost and inefficiency of placing geotextile and geogrid separately.

FABGRID APPLICATIONS

  1. Baselok FabGrid is widely used in infrastructure and civil engineering projects for effective separation, filtration, drainage, and soil stabilization across various ground conditions..
  2. • Road Construction – Prevents mixing of subgrade and aggregate, improving pavement life.
  3. • Railway Infrastructure – Enhances track stability and reduces maintenance requirements.
  4. • Drainage Systems – Allows water flow while retaining soil particles, ensuring efficient filtration.
  5. • Embankments & Slopes – Provides stability and helps control soil erosion.
  6. • Foundations & Subgrades – Improves load distribution and reduces settlement.
  7. • Landfills & Waste Management – Acts as a filtration layer and stabilizes base soil.
  8. • Temporary Access Roads – Supports movement over weak or soft ground conditions.
  9. • Industrial & Construction Sites – Creates stable working platforms for heavy equipment.

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