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  • slope protection with Geocell
  • slope protection with Geocell
  • slope protection with Geocell
  • slope protection with Geocell
  • slope protection with Geocell
  • slope protection with Geocell
  • slope protection with Geocell
    slope protection with Geocell
    slope protection with Geocell
    slope protection with Geocell
    slope protection with Geocell
    slope protection with Geocell
    slope protection with Geocell

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    Structure: three-dimensional structure

    Color: green, black, dark green

    Height: 50-300mm (national standard/non-standard)

    Welding distance: 300-1000mm

    Material: Smooth embossed and perforated flat plate, non perforated

    Sheet thickness: (flat smooth sheet) 1-1.2mm (embossed sheet) 1.3-1.5mm

    Tensile yield strength: ≥ 20Mpa

    Weld tensile strength: ≥ 100-142 (N/CM)

    Customization:

    Various specifications, height, welding distance, color, etc. can be processed and customized according to customer requirements

    Function:

    Environmental protection, slope protection, greening, road construction, soil consolidation, and foundation strengthening

    To prevent the topsoil from sliding downwards, the permeable holes of the grid sheet can effectively seep through, reduce the gravity of the water body, and the vegetation roots in the grid are intertwined to form a strong anchoring force, effectively protecting the topsoil and resisting water erosion.


    Product Description
    Product Introduction

    Geocell is a three-dimensional mesh cell structure formed by high-strength HDPE material and high-strength welding. It can expand and retract freely, can be folded during transportation, opened during use, and filled with materials such as sand, gravel, or soil in the cell, forming a structure with strong lateral limitations and high stiffness. It can be used as a cushion layer to enhance the bearing capacity of weak foundations, or laid on slopes to form slope protection structures. It can also be used to construct support structures, making construction convenient and fast.


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    Product Video
    Product Features

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    Product Architecture

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    performance indicators

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    Height

    (mm)

    Weld Pitch

    (mm)

    Sheet Thickness(mm)

    Tensile Yield Strength

    ≥(Mpa)

    Weld Tensile Strength

    ≥(N/CM)

    Thickness Of Flat Sheet MaterialThickness Of Embossed Sheet Material
    50300-10001-1.21.3-1.520100-142
    75300-10001-1.21.3-1.520100-142
    100300-10001-1.21.3-1.520100-142
    150300-10001-1.21.3-1.520100-142
    200300-10001-1.21.3-1.520100-142
    250300-10001-1.21.3-1.520100-142
    300300-10001-1.21.3-1.520100-142
    Note: There are various specifications, and the product height, welding distance, color, etc. can be customized according to customer requirements. The punching of the cell is free, and accessories such as bolts are also included.

    Slope protection mechanism

    Geocell reinforcement of foundation is a mechanical soil reinforcement method that does not change the particle composition and interconnectivity of the filling material. Geogrids are mainly reinforced through interactions, which mainly include three aspects: the lateral constraint effect of the geogrid, the mesh effect of the geogrid, and the frictional effect of the geogrid.

    The lateral constraint effect of the geocell is mainly reflected in two aspects: firstly, the frictional effect of the geocell on the soil outside the cell; The second is the clamping effect of the geocell on the soil within the grid element. The geotechnical cell provides a significant lateral constraint on the filling material, and the side walls of the cell generate upward frictional support force on the filling material, forming a composite with high flexural and tensile stiffness and shear strength. This complex can isolate the transmission of stress and displacement, thereby enabling flexible transition and coordinating the settlement of the top surface of the semi filled and semi excavated roadbed. Moreover, it has a net pocket effect on local loads, making the distribution of loads more uniform.

    The frictional effect of the geocell is mainly reflected in the interface between the filler and the cell wall. The frictional force partially transfers the vertical load to the geocell, and then partially outward from the geocell. Through this transfer, the foundation pressure is reduced, thereby improving the bearing capacity of the cushion layer and reducing foundation settlement and uneven settlement.


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    scope of application

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    Construction points

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