• High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 1
  • High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 2
  • High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 3
  • High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 4
  • High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 5
  • High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids System 6
High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids

High Strength Temperature Resistant Fiberglass Geogrid - Geocells and Geogrids

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Loading Port:
Qingdao
Payment Terms:
TT OR LC
Min Order Qty:
50000 m²
Supply Capability:
2000000 m²/month

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Fiberglass Geogrid with High Strength and Temperatures Resistance


Description Of Fiberglass Geogrid with High Strength and Temperatures Resistance:

Fiberglass geogrid is a kind of new favorable earthwork base material to strengthen the road surface and roadbed. This product is made by weaving and covering fiberglass filament. It is featured by high vertical and horizontal tensile strength, low unit extension, high flexibility, and favorable high and low temperature resistance. The products after surface covering own the favorable property of alkali resistance and aging resistance.

 


Main Features of Fiberglass Geogrid with High Strength and Temperatures Resistance:

1.High tensile strength, low elongation.

 

2.No long-term creep: the product can keep for a long time performance.

 

3.Thermal stability: fiber glass melting temperature above 1000 ℃.

 

4.The compatibility with asphalt.

 

5.Physical and chemical stability.

Specifications of Fiberglass Geogrid with High Strength and Temperatures Resistance:

Tensile Strength (KN)

Warp

>30

>50

>60

>80

>100

>120

>150

>200

Weft

>30

>50

>60

>80

>100

>120

>150

>120

Elongation(%)

<4< p="">

<4< p="">

<4< p="">

<4< p="">

<4< p="">

<4< p="">

<4< p="">

<4< p="">

Mesh Size(mm)

25.4*25.4

25.4*25.4

25.4*25.4

25.4*25.4

25.4*25.4

25.4*25.4

25.4*25.4

25.4*25.4

Elastic Modulus

76

76

76

76

76

76

76

76

Width(m)

1~6

1~6

1~6

1~6

1~6

1~6

1~6

1~6

Length(m)

50~300

50~300

50~300

50~300

50~300

50~300

50~300

50~300

Temperature Resistant(℃)

-100~280

-100~280

-100~280

-100~280

-100~280

-100~280

-100~280

-100~280

Resin Content (%)

18~20

18~20

18~20

18~20

18~20

18~20

18~20

18~20

Glue Type

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage

Bitumen PVC  SBR soakage




Applications of Fiberglass Geogrid with High Strength and Temperatures Resistance:

Strengthen bitumen concrete roadway and reduce and prevent various kinds of reflection gaps on roadway.

 

1.Suitable for highway, railway, airport road of subgrade enhancement.

 

2.Suitable for the large parking lot and port freight yard that the foundations of the permanent load increased.

 

3.Suitable for railway, highway slope protection.

 

4.Suitable for culverts.

 

5.Suitable for the uniaxial tensile geogrid reinforced soil secondary enhancement, after further enhance soil, prevent soil erosion.

 

6.Mining, tunnel reinforcement.

Fiberglass Geogrid for Railway Basement Reinforcement


IMages of Fiberglass Geogrid with High Strength and Temperatures Resistance:

 

Fiberglass Geogrid with High Strength and Temperatures Resistance

Fiberglass Geogrid for Railway Basement Reinforcement

Fiberglass Geogrid for Railway Basement Reinforcement

Fiberglass Geogrid with High Strength and Temperatures Resistance

Fiberglass Geogrid for Railway Basement Reinforcement

Fiberglass Geogrid for Railway Basement Reinforcement

Fiberglass Geogrid with High Strength and Temperatures Resistance


FAQ of Fiberglass Geogrid with High Strength and Temperatures Resistance:

1. What are we supplying?

We are specialized in producing Geosynthetic materials, like Geogrid Series, HDPE Geocell, Geonet, Geotextile, Geomat, Tri Denmensional Composite Grainage Geonet, and Geomembrane Series.

 .

2. How Many years experience do we have?
We have been exported to more than 20 countries in the past 15 years.


3. How long do we usually reply your request?

We always reply our customer within 24 hours.







 

Q: Geogrid and geotextile, the role is the same?
The main function of geotextile is to isolate the protective function of drainage and reinforcement,
Q: How do geogrids improve the performance of geosynthetic-reinforced embankments?
Geogrids improve the performance of geosynthetic-reinforced embankments by providing reinforcement and enhancing the stability of the structure. They distribute the applied loads more uniformly, reducing stress concentrations and preventing the embankment from excessive settlement or deformation. Additionally, geogrids increase the tensile strength of the soil, enabling it to withstand higher loads and reducing the risk of slope failure.
Q: How do geogrids improve the performance of retaining walls in earthquake-prone areas?
Geogrids improve the performance of retaining walls in earthquake-prone areas by providing reinforcement and stability. These high-strength geosynthetic materials are placed within the soil behind the retaining wall, which helps to distribute the forces generated during an earthquake more evenly. This reduces the pressure on the wall and enhances its resistance to lateral movement and potential failure. Geogrids also increase the overall strength and load-bearing capacity of the soil, making the retaining wall more resilient against seismic forces.
Q: Unidirectional tensile plastic geogrid manufacturers which good
The utility model is punched on the extruded polymer plate (raw material is polypropylene or high-density polyethylene), and then directionally stretched under the heating condition
Q: Can geogrids be used in retaining wall drainage systems?
Yes, geogrids can be used in retaining wall drainage systems. Geogrids provide reinforcement to the soil and help to prevent soil erosion and slippage. They can be used to enhance the stability and longevity of retaining walls by improving the drainage system, reducing hydrostatic pressure, and allowing water to flow through the soil behind the wall.
Q: How do geogrids improve the performance of geosynthetic-reinforced retaining walls?
Geogrids improve the performance of geosynthetic-reinforced retaining walls by providing tensile reinforcement to the soil, increasing its overall strength and stability. They help distribute the lateral forces exerted on the wall, preventing potential wall failure or deformations. Additionally, geogrids increase the bearing capacity of the soil, allowing for the construction of taller and steeper walls.
Q: Can geogrids be used in reinforcement of gabion structures?
Yes, geogrids can be used in the reinforcement of gabion structures. Geogrids are commonly used as a stabilizing element to enhance the strength and stability of gabion walls. They help to distribute loads and prevent the movement of soil particles, thereby improving the overall performance and durability of the gabion structure.
Q: Geogrid test items: what is the point of the joint point?
The water penetration point of the lap joint is a testing project of geomembrane or waterproof board
Q: Are geogrids suitable for reinforcement of soft soils?
Yes, geogrids are suitable for the reinforcement of soft soils. Geogrids are specifically designed to improve the stability and strength of weak soils by distributing load and providing tensile strength. They effectively restrain lateral movement and increase the bearing capacity of soft soils, making them a reliable solution for reinforcement in such conditions.
Q: Are geogrids suitable for use in reinforced embankments?
Yes, geogrids are suitable for use in reinforced embankments. Geogrids provide soil stabilization and enhance the strength of the embankment by distributing loads and reducing lateral movement. They have been widely used in various civil engineering projects for reinforcing slopes and retaining walls, making them a reliable and effective solution for reinforced embankments.

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