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Steel-plastic geogrid Product Description: Steel-plastic geogrid is compounded by steel-plastic reinforcing strips through a novel process. Due to the product's surface being pressed into a regular coarse pattern, it withstands tremendous tensile stress and friction with the backfill when laid in the replacement soil layer. Overall, it restricts the shear of the foundation soil, lateral extrusion, and heaving. Thanks to the high rigidity of the reinforced soil cushion layer, it facilitates the distribution of the upper foundation load and transmits it more evenly to the underlying soft soil layer, thereby significantly enhancing the bearing capacity of the foundation. The reinforced soil cushion layer, due to its reinforcing effect, increases the overall stiffness of the foundation within the compression layer, which is beneficial for adjusting the foundation deformation. The reinforced soil composite cushion formed by using the steel-plastic reinforcing geogrid is a flexible structure that can effectively absorb seismic energy, thus exhibiting excellent seismic performance. Suitable for civil engineering projects including roadways, railways, embankments, bridge abutments, construction access roads, docks, revetments, flood embankments, dams, beachfront management, cargo yards, waste disposal sites, airports, sports fields, eco-friendly buildings, soft soil foundation reinforcement, retaining walls, slope protection, and pavement durability. II. Features: High strength, low creep, adaptable to various soil types, fully meets the requirements for tall retaining walls in high-grade highways. 2. Effectively enhances the interlocking and gripping action of reinforced bearing surfaces, significantly strengthens the bearing capacity of the foundation, effectively restricts lateral displacement of the soil mass, and improves the stability of the foundation. 3. Compared to traditional gratings, it boasts enhanced strength, high load-bearing capacity, corrosion resistance, aging resistance, large friction coefficient, uniformly distributed holes, ease of installation, and a long service life. 4. More suitable for deep-sea operations and embankment reinforcement, fundamentally solving the technical challenges such as low strength, poor corrosion resistance, and short service life caused by other materials used in gabions due to long-term erosion by seawater. 5. Effectively prevents construction damage caused by machinery crushing or destroying during construction.
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