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100mm HDPE Geocell for Landscape Slope Greening Surface Soil Protection

Categories HDPE Geocell
Brand Name: GeoMax
Model Number: GM100-440
Certification: CE,ISO9001-2015
Place of Origin: ANHUI CHINA
MOQ: 1000 ㎡
Price: Negotiation
Payment Terms: T/T, L/C
Supply Ability: 3000㎡ per day
Delivery Time: 10-20 days
Packaging Details: Folded strips are wrapped by film and layed on pallets or as requested
Material: 100% HDPE Plastic
Thickness: 1.2-1.5mm
Surface: Smooth or Textured surface
Tensile Strength: 25kN/m
Standard: ASTM; GB Standard;
Peel Strength: 14.2 kN/m
Height: 100mm
Color: Black;Yellow;Green
Welding Distance: 440mm
Density: 0.950 g/cm3
Certificate: CE;ISO;ASTM
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100mm HDPE Geocell for Landscape Slope Greening Surface Soil Protection

100mm HDPE Geocell for Landscape Slope Greening Surface Soil Protection

GEOMAX® GEOCELL PRODUCT INTRODUCTION

GeoMax® Geocell — High-Performance Soil Reinforcement

The GeoMax® Geocell system provides a premier solution for ground modification through cellular confinement. The interconnected three-dimensional network, manufactured from high-strength HDPE, acts as a stiff mattress that confines infill materials, thereby significantly improving the shear strength and load-bearing capacity of the composite structure. Its design ensures optimal force distribution, reducing settlement and enhancing overall stability. Engineered for durability, it withstands aggressive environmental challenges, including UV degradation and chemical exposure. This makes GeoMax® an indispensable, sustainable technology for a wide range of geotechnical applications, from reinforcing weak subgrades and protecting embankments to constructing stable platforms for infrastructure projects.


SPECIFICATIONS

Index PropertiesTest MethodUnitsValues
Material--100% Virgin HDPE
Carbon Black contentASTM D 1603%≥1.5
DensityASTM D 1603g/cm30.935-0.965
Sheet Thickness ± 3%ASTM D 5199mm1.5
Seam Peel StrengthUSACE GL-86-19KN/m≥14.2
Tensile strength at YieldASTM D 1603KN/m≥22
Environmental stress crack resistanceASTM D 1603hrs≥5000
OIT oxidation induction timeASTM D 1603min≥150
TypeGM330GM356GM400GM432GM445GM500GM660GM712
Welding Distance(mm) ± 3%330356400432445500660712
Cell Depth(mm) ± 3%50,75,100,150,200,250
Dimensions
Expanded Cell Size (width×length) (mm) ± 3%250 x 210260 x 225290 x 260320 x 275315 x 300360 x 300470 x 450510 x 475
Expanded Cell numbers(width×length)10 x 349 x 348 x 348 x 348 x 347 x 345 x 345 x 34
Expanded Section size (width×length) (m) ± 3%2.50 x 7.142.34 x 7.652.32 x 8.842.56 x 9.352.52 x 10.22.52 x 11.222.35 x 15.32.55 x 16.15
Expanded Section Area (m2) ± 5%17.8517.920.523.9425.728.7435.9541.18


DETAILED PHOTOS

APPLICATIONS

SOIL REINFORCEMENT

Geomax®(Hdpe Geocell) is the solution to soil stabilization or soil reinforcement. It can increase the bearing capacity of the pavement and avoid cracking of the pavement.


SLOPE PROTECTION

Geomax®(Hdpe Geocell) is the obvious choice for slope protection or erosion control. It has both good drainage effect and slope protection.


CHANNEL PROTECTION

Geomax®(Hdpe Geocell) delivers stability and protection of channels
exposed to erosive conditions ranging from low to high flows, either intermittent or continuous.


RETAINING WALLS

Geomax®(Hdpe Geocell) offers highly permeable and acts as a great number of planting pots, allowing rainwater to infiltrate, minimizing runoff.

PRODUCTION LINE

INVENTION AND TESTING


PRODUCT AREA

FAQ:

1. How does 3D confinement differ from planar reinforcement?
3D confinement creates a rigid cellular structure that provides all-around stress dispersion, while planar reinforcement (like geogrids) mainly offers in-plane tensile strength. The cellular system acts as a stiff mattress, distributing loads vertically and laterally, whereas planar reinforcement relies on soil-reinforcement interaction through friction and interlock.

2. What is the load distribution mechanism of cellular systems?
The load distribution occurs through multiple mechanisms: lateral confinement of infill material, membrane effect under deformation, and beam effect that spans over weak subgrade areas. The cellular structure creates a composite material with significantly improved load-bearing capacity and stress distribution angles typically ranging from 45-60 degrees.

3. How does the geocell-soil composite action work?
The composite action is achieved through:

  • Mechanical interlock between infill particles and cell walls

  • Friction between the geocell material and infill

  • Interconnection of cells creating a continuous reinforced mass
    This results in a composite modulus 3-5 times higher than unreinforced infill.




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