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Three dimensional Geomat

3D geomesh pad is a multi-layer plastic 3D geomesh pad made from thermoplastic resin through extrusion, stretching, composite molding, and other processes.
Thickness:1.2/2/3mm
Weight:220-480g/m²
Tensile Strenght:0.8-3.2 KN/m

Key Word:

Geocell, Geogrid, Geotextile, Grass Grid, Geomembrane, Geotube, Composites, Geomat, Geobag

Category:

隐藏域元素占位

  • Product Description
    • Commodity name: Three dimensional Geomat
    • 列表页概要: 3D geomesh pad is a multi-layer plastic 3D geomesh pad made from thermoplastic resin through extrusion, stretching, composite molding, and other processes.

    3D geomesh pad is a multi-layer plastic 3D geomesh pad made from thermoplastic resin through extrusion, stretching, composite molding, and other processes.<br> Thickness:1.2/2/3mm<br> Weight:220-480g/m²<br> Tensile Strenght:0.8-3.2 KN/m

    Product Features

    A three-dimensional structure similar to a loofah network mat used for planting grass and fixing soil. The texture is loose and flexible, leaving 90% of the space to fill with soil, gravel, and fine stones. The plant roots can pass through it and grow comfortably, neatly, and evenly. The grown grass firmly combines the mat, turf, and soil surface. As the plant roots can penetrate 30-40cm below the ground surface, a strong green composite protective layer is formed.

     

    Application scope

    1. Before the grass grows, it can protect the surface of the land from wind and rain erosion;

    2. It can firmly maintain the uniform distribution of grass seeds on the slope, preventing them from being washed away by wind and rain;

    3. Black mesh mats can absorb a large amount of heat energy, increase ground moisture, promote seed germination, and extend the plant growth period;

    4. Due to the roughness of the surface, wind and water flow generate countless eddies on the surface of the mesh pad, resulting in energy dissipation and causing its contents to deposit in the mesh pad;

    5. The composite protective layer formed by the growth of plants can withstand high water levels and high flow velocities (3-4m/s in two days and 5-6m/s in 4-5 hours);

    6. It can replace slope protection materials such as concrete, asphalt, and block stones, and is used for slope protection on highways, railways, waterways, embankments, mountain slopes, etc;

    7. It can significantly reduce the engineering cost, which is 1/7 of the cost of C15 concrete and dry block stone slope protection, and 1/8 of the cost of mortar block stone;

    8. After laying on the surface of sandy land, it can prevent the movement of sand dunes, greatly improve surface roughness, increase surface sediment, change surface physical and chemical properties, and improve local ecological environment;

    9. Suitable for slope protection in municipal engineering projects such as highways, railways, water conservancy, and mines to prevent soil erosion;

    10. Commonly used materials for landscaping and environmental protection.

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