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100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

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100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

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Brand Name : GeoMax

Model Number : GM100-356

Certification : CE; ISO9001-2015

Place of Origin : ANHUI CHINA

MOQ : 2500 ㎡

Price : Negotiation

Payment Terms : T/T, L/C

Supply Ability : 40000㎡ per day

Delivery Time : 10-20 days

Packaging Details : Folded strips are wrapped by film and layed on pallets or as requested

Material : Virgin HDPE Plastic

Geocell Thickness : 1.0mm-1.5mm

HDPE Geocell Standard : ASTM ; GB Standard

Height : 100mm

Size : 356mm

Surface : Smooth & Textured; Perforated

Welded Space : 356mm

Density : 0.950 g/cm3

OIT : 100min

ESCR : 5000 Hours

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100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

GEOCELL PRODUCT INTRODUCTION

GeoMax® is a top company in geotechnical engineering, with over 20 years of experience in cellular confinement systems. The company's portfolio includes over 100 patented technologies, which are designed to deliver advanced solutions in the areas of ground stabilisation, erosion control and soil reinforcement.

Geocells are designed to be really strong, flexible and long-lasting. This means they can meet the demands of modern infrastructure and environmental challenges. All our products are ISO and CE certified, and made to really high standards to make sure they're up to global standards and you can trust them.

GeoMax® delivers fully customised solutions that are tailored to project-specific needs. The organisation is really proud of its commitment to engineering excellence and the pursuit of client success. The company's main business is building smarter, stronger, more sustainable ground systems.

HDPE GEOCELL SPECIFICATIONS

Index Properties Test Method Units Values
Material - - 100% Virgin HDPE
Carbon Black content ASTM D 1603 % ≥1.5
Density ASTM D 1603 g/cm3 0.935-0.965
Sheet Thickness ± 3% ASTM D 5199 mm 1.5
Seam Peel Strength USACE GL-86-19 KN/m ≥14.2
Tensile strength at Yield ASTM D 1603 KN/m ≥22
Environmental stress crack resistance ASTM D 1603 hrs ≥5000
OIT oxidation induction time ASTM D 1603 min ≥150
Type GM330 GM356 GM400 GM432 GM445 GM500 GM660 GM712
Welding Distance(mm) ± 3% 330 356 400 432 445 500 660 712
Cell Depth(mm) ± 3% 50,75,100,150,200,250
Dimensions
Expanded Cell Size (width×length) (mm) ± 3% 250 x 210 260 x 225 290 x 260 320 x 275 315 x 300 360 x 300 470 x 450 510 x 475
Expanded Cell numbers(width×length) 10 x 34 9 x 34 8 x 34 8 x 34 8 x 34 7 x 34 5 x 34 5 x 34
Expanded Section size (width×length) (m) ± 3% 2.50 x 7.14 2.34 x 7.65 2.32 x 8.84 2.56 x 9.35 2.52 x 10.2 2.52 x 11.22 2.35 x 15.3 2.55 x 16.15
Expanded Section Area (m2) ± 5% 17.85 17.9 20.5 23.94 25.7 28.74 35.95 41.18

DETAILED PHOTOS

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey 100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

APPLICATIONS

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

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.

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

SLOPE PROTECTION

Geomax® (Hdpe Geocell) is an excellent option for slope protection or erosion control. It has been observed to have both good drainage effect and slope protection.

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

CHANNEL PROTECTION

Geomax® (HDPE Geocell) has been found to contribute to stability and protection of channels.
It is exposed to erosive conditions ranging from low to high flows, either intermittent or continuous.

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

RETAINING WALLS

Geomax® (HDPE Geocell) has been found to be highly permeable, which could be beneficial as it allows rainwater to infiltrate the ground. It has also been observed to act as a number of planting pots, with the potential to help minimize runoff.

PRODUCTION LINE

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

PRODUCT AREA

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

CERTIFICATES

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

PHOTO OF THE EXHIBITION

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

100mm Height 356mm Welded Space HDPE Geocell for Subgrade Improvement | High-Tensile In Turkey

  1. FAQ:
    1. Q: How to deal with Geocell installation in road sections with high groundwater levels to prevent water damage to the subgrade?
    A: First, lay a 200 - 300mm thick gravel drainage layer at the bottom of the subgrade. Then, choose Geocell with a water - permeable structure (such as HDPE Geocell with 2mm diameter drainage holes on the cell walls). During installation, ensure the Geocell is slightly inclined (slope 1% - 2%) along the road direction to guide water to the side ditches. Additionally, set up perforated drainage pipes (diameter 110mm) at the edge of the Geocell every 10 - 15m to discharge accumulated water in a timely manner.
    1. Q: In cold regions, will the freeze - thaw cycle damage the Geocell - reinforced road subgrade? How to avoid it?
    A: High - quality HDPE Geocell has good low - temperature resistance (- 70℃ to + 110℃) and can withstand general freeze - thaw cycles. To further prevent damage, the following measures should be taken: use non - frost - heave filling materials (such as gravel with a frost heave rate ≤ 1%); increase the Geocell cell height by 20% - 30% compared to normal temperature areas to enhance load - bearing capacity; and lay a 500mm thick insulation layer (such as extruded polystyrene board) under the Geocell in severely cold regions (annual average temperature ≤ - 10℃).


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