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High Tensile Resistance Roll Size 5.2x100M Retaining Walls Polyester Geogrid Reinforce Railway Slope Soil

High Tensile Resistance Roll Size 5.2x100M Retaining Walls Polyester Geogrid Reinforce Railway Slope Soil

Brand Name: SZ
Model Number: Polyester Geogrid
MOQ: 10.000 m2
Price: $0.3-$2.0/SQM
Payment Terms: T/T,L/C
Supply Ability: 30.000 SQM PER DAY
Detail Information
Place of Origin:
CHINA
Certification:
CE
Product Name:
High Tensile Resistance Roll Size 5.2x100M Retaining Walls Polyester Geogrid Reinforce Railway Slope Soil
Usage:
Retaining Walls Polyester Geogrid
Application:
Reinforce Railway Slope Soil
Process:
Woven Coated Warp Knitted Coated SBR
Mesh Size:
25.4x25.4mm / 50.8x50.8mm
Tensile Strength:
60- 1000 KN/M
Roll Size:
3.95x100M / 5.95x100M Or 50M
Package:
By Roll With Woven Bags
Packaging Details:
Packed in double layer woven bags to ensure smooth arrival and avoid rough handle.
Supply Ability:
30.000 SQM PER DAY
Highlight:

polyester geogrid for retaining walls

,

high tensile geogrid for slope reinforcement

,

railway soil reinforcement polyester geogrid

Product Description

High Tensile Resistance Roll Size 5.2x100M Retaining Walls Polyester Geogrid Reinforce Railway Slope Soil

 

 

 

Key Benefits of Using Yixing Shenzhou Polyester Geogrid in Retaining Walls:


Cost-Effectiveness: MSE walls are significantly cheaper to build than equivalent-height concrete

cantilever walls, especially as the height increases.

 

Speed of Construction: No waiting for concrete to cure. Construction is rapid, using standard earthmoving equipment.

 

Flexibility and Durability: Unlike rigid concrete walls, MSE walls can tolerate significant settlement and seismic

activity without catastrophic failure. They are flexible and can absorb movement.

 

Aesthetic Versatility: The wall face can be finished with a wide variety of materials (natural stone, textured concrete, etc.)

to blend with any environment.

 

High Load-Bearing Capacity: Properly designed MSE walls can support very heavy loads, such as highway bridge

abutments and industrial platforms.

 

 

Polyester Geogrid Design and Construction Workflow:


Site & Soil Analysis: Geotechnical engineers analyze the soil conditions, loads, and required wall height.

Design: Engineers specify the geogrid type (polyester), its strength, length, and vertical spacing between layers.

The length is crucial for creating a stable reinforced zone.

 

Construction:

A leveling pad is prepared.

The first layer of wall facing units is placed.

A layer of select backfill is placed and compacted.

The polyester geogrid is rolled out over the compacted soil and connected to the wall face.

The process repeats: backfill, compact, place geogrid, until the top is reached.

 

 

Yixing Shenzhou Polyester Geogrids:

  • 1.Uniaxial Polyester Geogrids:

Stronger in one direction, used for reinforcement in specific directions, such as retaining walls.

          Popular Types : 100-30 KN/M ; 200-30 KN/M ; 200-50 KN/M ; 250-50 KN/M ; 200-100 KN/M 

 

  • 2. Biaxial Polyester Geogrids:

Strong in both directions, suitable for applications requiring reinforcement in all directions, like embankments and slopes. 

       Hot Sell Models : 80-80 KN/M ; 120-120KN/M ; 200-200KN/M; 500-500KN/M

 

        Polyester Geogrids Coating PVC Or Coated SBR

 

High Tensile Resistance Roll Size 5.2x100M  Retaining Walls Polyester Geogrid Reinforce Railway  Slope Soil 0

 

 

 

 

 

200-2000KN/M PET Biaxial Polyester Geogrids Technical Specification (ASTM/ISO Standards)

 

Property PET-200 PET-500 PET-1000 PET-2000 Test Method
Tensile Strength (MD/CMD) 200×200 kN/m 500×500 kN/m 1000×1000 kN/m 2000×2000 kN/m ISO 10319
Elongation at Break ≤13% ≤13% ≤13% ≤13% ASTM D6637
Creep Limit (50 yrs) ≤1.5% ≤1.5% ≤2% ≤2.5% ISO 13431
Aperture Size 50.8x50.8mm 50.8x50.8mm 50.8x50.8mm 50.8x50.8mm EN ISO 10318-1

 

High Tensile Resistance Roll Size 5.2x100M  Retaining Walls Polyester Geogrid Reinforce Railway  Slope Soil 1

 

 

Packing and Shipping

 

Selling packing: Customers' company Logo mark can be designed and added.
Outer packing: Packed in double layer woven bags to ensure smooth arrival and avoid rough handle.
Delivery Detail: Winthin 10 days after received your deposit
Delivery Detail: 100,000 square meters can be finished within 3 days
Delivery Time: 3-20 days after confirming order, detail delivery date should be decided according to

production season and order quantity.

 

High Tensile Resistance Roll Size 5.2x100M  Retaining Walls Polyester Geogrid Reinforce Railway  Slope Soil 2

 

 

 

 

 

Polyester Geogrids Application :

 

Polyester geogrids are used in all major reinforcement applications,

especially where long-term performance is critical:

 

Reinforced Soil Retaining Walls (MSE Walls):

The primary application, where they provide the tensile strength to hold the soil mass together.

 

Steep Slope Reinforcement: Stabilizes slopes at angles steeper than natural soil would allow.

 

Basal Reinforcement over Soft Soils:

Used to construct embankments and roads over soft, compressible ground by distributing

loads and providing a stable platform.

 

Landfill Liners and Capping Systems:

Reinforces the sides and covers of landfills, providing stability to the composite liner system.

 

High Tensile Resistance Roll Size 5.2x100M  Retaining Walls Polyester Geogrid Reinforce Railway  Slope Soil 3

 

More expertise and solutions for  PET Grid Polyester Geogrids, 

please contact Yixing Shenzhou Amelie 

 

Email : amelie@geogrid-cn.com

 

Mob/Whatsapp : 0086 13815119816

 

 

Welcome To Get Free Sample!!!

 

 

 

Yixing Shenzhou Geosynthetics Coated SBR Reinforcement Polyester Geogrid is a premium geosynthetic solution:

 

designed for the most demanding infrastructure projects. Its combination of:

High-Strength, Low-Creep Polyester Core for long-term stability, and

Abrasion-Resistant SBR Coating for durability during installation and service,

makes it an ideal choice for reinforcing the foundations of railways and highways.

It transforms a weak, two-layer system (soil + aggregate) into a strong, composite,

three-layer system (soil + geogrid + aggregate), leading to a more durable, long-lasting, and cost-effective infrastructure asset.