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Steel Plastic Composite Geogrid

High-strength steel wire is specially treated with polyethylene (PE), and other additives are added, and then extruded to form a composite high-strength tensile strip with rough embossing on the surface, which is a high-strength reinforced geostrip. From this single belt, weave or sandwich it vertically and horizontally at a certain distance, and use special welding technology to strengthen the bonding (ultrasonic welding technology) to weld the intersection points to form a steel-plastic composite geogrid.

Description Of Steel Plastic Composite Geogrid

The steel plastic composite geogrid uses high tensile steel wire (or other fiber)
specially handled and polyethylene (P.E) with other assistants. Then squeeze it out and make it become composite high-strength anti-pull belt and the surface has rough embossing then it is reinforcement earthwork belt. Warp knitting vertically and horizontally using this single belt and welding the joint using a special welding technology to molding is reinforcement geogrid.

Features:

● Steel-plastic geogrid has the characteristics of high strength and small change.
● High strength, low creep, and adaptable to various environmental soils.
● Long life, anti-aging, and resistant to harsh environments such as acid, alkali, and salt.
● Construction is convenient and fast, short cycle time and low cost.

Application:

1. Soil stabilization: Steel plastic composite geogrids are used to reinforce and stabilize soil in areas with weak or unstable ground conditions. They can be used to improve the bearing capacity and reduce settlement of the soil, making it suitable for construction purposes.

2. Retaining walls and slopes: Geogrids are used in the construction of retaining walls and slopes to provide additional strength and stability. The steel component of the composite geogrid provides high tensile strength, while the plastic component enhances the durability and resistance to corrosion.

3. Erosion control: Geogrids are used in erosion control measures, such as slope stabilization and shoreline protection. They help prevent soil erosion by providing reinforcement and retaining the soil in place.

4. Landfill and waste containment: Steel plastic composite geogrids are used in the construction of landfills and waste containment facilities to provide reinforcement and stability to the liners and caps. They help prevent the leakage of contaminants into the surrounding environment.

5. Mining and oil exploration: Geogrids are used in mining and oil exploration projects for various applications, including reinforcing access roads, stabilizing slopes and embankments, and supporting heavy equipment.

technical parameters

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