• Warp Knitted Polyester Geogrid With Ce For Construction System 1
  • Warp Knitted Polyester Geogrid With Ce For Construction System 2
  • Warp Knitted Polyester Geogrid With Ce For Construction System 3
  • Warp Knitted Polyester Geogrid With Ce For Construction System 4
  • Warp Knitted Polyester Geogrid With Ce For Construction System 5
  • Warp Knitted Polyester Geogrid With Ce For Construction System 6
Warp Knitted Polyester Geogrid With Ce For Construction

Warp Knitted Polyester Geogrid With Ce For Construction

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Loading Port:
Qingdao
Payment Terms:
TT OR LC
Min Order Qty:
30000 m²
Supply Capability:
1000000 m²/month

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Structure of  Polyester Geogrid

Polyester Geogrid is made in Polyester with their square apertures, high tensile strength and optimised geometry of nodes and ribs make them equal to any other similar material.  The reinforcing action of Polyester Geogrids lies mainly in confining soil and increasing its shearing resistance by a process of interlocking between the square ribs and the soil. The load dispersal effect from the interlocking mechanism is highly effective and can reduce sub-base thickness and construction cost. Polyester Geogrids can be used with any kind of mechanical fill material.  Two aperture size ranges are available for optimum matching with project fill.

Main Features of the Polyester Geogrid

  •  Light weight, high tensile strength, high modulus, low elongation and good toughness.

  • Corrosion  resistance, no long-term creep, long life span.

  • Good physical and chemical stability and good thermal stability.

  • Resistant to fatigue cracking, high-temperature track and low temperature shrinkage cracking.

  • Delaying and decreasing crack reflection.

  • Light weight, high tensile, corrosion resistance

  • Road maintenance and reinforcement

Packaging & Delivery

Packaging Details:PP bags or PE film. Or Packed as customers' requests.
Delivery Detail:10-20days after the contract is effective

 

Fiberglass Images

 

Warp Knitted Polyester Geogrid With Ce For Construction

Warp Knitted Polyester Geogrid With Ce For Construction

Warp Knitted Polyester Geogrid With Ce For Construction

 

 

 

Polyester Geogrid Specification

  • Converting old cement concrete road into composite road.

  • Restraining reflection cracking caused by block shrinkage.

  • Preventing and controlling the cracking caused by new and old combination and uneven settlement. 

  • Road extension.

  • Reinforcement of soft soil foundation and overall strength of roadbed

 

Property

Test Method

TGSG

15-15

TGSG

20-20

TGSG

30-30

TGSG

40-40

Ultimate tensile strength(1)  (kN/m)

MD

 

 

 

 

 

 

ASTM D 6637

15

20

30

40

CD

15

20

30

40

Elongation at maximum load (%)

MD

13

CD

13

Tensile strength at 2 % elongation (kN/m)

MD

5

7.5

10.5

14

CD

5

7.5

10.5

14

Tensile strength at 5 % elongation (kN/m)

MD

7

14

21

28

CD

7

14

21

28

Minimum Carbon Black

%

ASTM D 4218

2

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

  

FAQ

We have organized several common questions for our clients,may help you sincerely:

Q: How about your company?

A:Our company are one of the largest geosynthetic products supplier in the world.We have the products experience more than 20 years.Already export to USA/Germeny/Australia/Zambia/Brazil etc.more than 20 countries.Almost 10years.Our products including Geocell/Fiberglass Geogrid/Geomembrane/Geotextile/Geonet etc.

Q.Does your products have good qualitity?

A:Yes,we have do many big projects such as the 2008 Beijing Olympic BIRD NEST. Divert water from the south to the north project. And our products have CE certificate also.

Q:How long can we receive the products after purchase?

A:In the purchase of product within three working days, We will arrange the factory delivery as soon as possible. The pecific time of receiving is related to the state and position of customers.Commonly 15-20 working days can be delivery.

 

Q:How do geogrids improve the performance of reinforced soil foundations?
Geogrids improve the performance of reinforced soil foundations by providing additional strength and stability to the soil. They act as a reinforcement material that helps distribute the loads more evenly, reducing potential settlement and improving overall stability. Geogrids also prevent soil erosion and lateral movement, increasing the longevity and durability of the foundation.
Q:How do geogrids improve the performance of reinforced soil slopes in expansive soils?
Geogrids improve the performance of reinforced soil slopes in expansive soils by providing additional strength and stability to the soil. They help distribute the loads more evenly, reducing the risk of soil movement and slope failure. Geogrids also help mitigate the effects of soil expansion and contraction, as they create a barrier that limits the movement of soil particles. This enhances the overall structural integrity of the reinforced soil slope, making it more resistant to the damaging effects of expansive soils.
Q:How do geogrids improve the stability of steep slopes?
Geogrids improve the stability of steep slopes by providing reinforcement and preventing soil erosion. They are placed within the soil layers, creating a strong interlocking network that increases the shear strength and resistance to sliding. Additionally, geogrids distribute the load over a larger area, reducing the stress on the soil and preventing slope failures.
Q:How do geogrids improve the performance of mechanically stabilized slopes in high rainfall areas?
Geogrids enhance the performance of mechanically stabilized slopes in high rainfall areas by providing additional strength and stability to the soil. They act as a reinforcement material, effectively distributing the load and reducing the potential for slope failure. Additionally, geogrids prevent soil erosion by minimizing surface runoff and facilitating water drainage, thus preserving the integrity of the slope even during heavy rainfall events.
Q:Who has the "highway geosynthetics geogrid" specification
The first part of Geogrid
Q:Can geogrids be used in retaining walls for highway sound barriers?
Yes, geogrids can be used in retaining walls for highway sound barriers. Geogrids are often used in retaining walls to provide additional reinforcement and stability. They help distribute the load and improve the overall strength of the retaining wall. In the case of highway sound barriers, geogrids can be utilized to enhance the structural integrity of the wall while also reducing noise pollution.
Q:Why steel plastic geogrid in the test, will choose to peel out a single wire test? What are the causes and sources of this method?
Because the main force borne by the steel wire, if it is false, the consequences can be disastrous ah!
Q:How does a geogrid work?
A geogrid works by providing reinforcement to soil or other materials. It is typically made of high-strength polymers or fibers arranged in a grid-like pattern. When placed within the soil, the geogrid interlocks with the surrounding particles, creating a stable network. This enhances the tensile strength and overall performance of the soil, preventing excessive movement, erosion, or failure. The geogrid redistributes applied loads, reducing stress concentrations and improving the stability and longevity of structures like retaining walls, roadways, and embankments.
Q:What is the effect of polymer type on geogrid behavior?
The effect of polymer type on geogrid behavior is significant as it determines the strength, durability, and overall performance of the geogrid. Different polymers have varying tensile strength, elongation characteristics, and resistance to environmental factors such as UV radiation and chemical exposure. Therefore, the choice of polymer type directly impacts the geogrid's ability to provide reinforcement, soil stabilization, and load distribution in geotechnical applications.
Q:How do geogrids help in reducing construction material consumption?
Geogrids help in reducing construction material consumption by providing reinforcement and stabilization to soil or aggregates, allowing for the use of thinner layers of materials. This reduces the overall amount of materials required for construction, leading to cost savings and more sustainable practices.

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