Gator Fabric GF4.4 (100 lbf) is a needle punched non-woven geotextile made of polypropylene fibers. GATOR FABRIC GF4.4 geotextile is ideal for drainage, filtration and will allow water flow of 135 gallons per minutes per square foot (613 L/min/sq. m.) in paver or retaining wall applications. Its filament fibers are used for soil separation and drainage. They combine high durability along with excellent physical and hydraulic properties. It is non-biodegradable and resistant to most soil chemicals.
Gator Filter Fabric 4.4 oz Non-Woven 6' x300' Roll
In Stock
Product Code
NGF44NW-06300
- Non-Woven
- Patios, Walkways & Driveways
- 100 lbs/ft

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How to Get It?
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In-Store Pickup
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Boxed Shipment to Home or Jobsite
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Local Delivery via Flatbed Truck
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Local Delivery via Dump Truck
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Installation Instructions
Method of installation of Gator Fabric GF4.4 (100 lbf) for stability and soil separation.

Please Note:
- When excavation has been completed, leveled and compacted, lay the Gator Fabric GF4.4 covering bottom and sides of the excavated area.
- Ensure the Gator Fabric GF4.4 is stretch to avoid any folds.
- Always overlap the seams of geotextile by a minimum 12″ (30 cm).
STEP 1

STEP 2
With a rake, even out, level and compact the soil to a tolerance of 3/8" (10 mm).

STEP 3
Apply Gator Fabric GF4.4 to the entire foundation and sides. Overlap seams by 12" (30 cm) of the hardscape installation and trim to size.

STEP 4
Spread, level and compact your aggregate or bedding material when installing Gator Base and complete with your selected pavement.

Ideal for:
- Drainage control
- Protection against erosion
- Behind retaining walls
- Paver sub base foundation
- Gator Base foundation application
- General landscape
- Soil separations

Features:
- Specially treated to be hydrophilic, it allows high-water flow (135 Gal/min/sq. ft. (613 L/min/sq. m.))
- Drainage and filtration
- Soil separation
- Erosion control
- UV-Resistance
- Inert to soil chemicals (Alkalis, Acids) and to biological degradation
- Easy to handle
- High strength/dimensionally stable
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