• Fiberglass Geogrid for Tunnel Reinforcement System 1
  • Fiberglass Geogrid for Tunnel Reinforcement System 2
  • Fiberglass Geogrid for Tunnel Reinforcement System 3
  • Fiberglass Geogrid for Tunnel Reinforcement System 4
  • Fiberglass Geogrid for Tunnel Reinforcement System 5
  • Fiberglass Geogrid for Tunnel Reinforcement System 6
Fiberglass Geogrid for Tunnel Reinforcement

Fiberglass Geogrid for Tunnel Reinforcement

Ref Price:
$0.50 - 1.50 / m² get latest price
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
50000 m²
Supply Capability:
2000000 m²/month

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Fiberglass Geogrid for Tunnel Reinforcement


Description Of Fiberglass Geogrid for Tunnel Reinforcement:

Fiberglass geogrid is based on fiberglass woven cloth coated with modified bitumen or PVC, it was developed to address the problem of pavement cracking on highways, roads and runways, driven by a need to reduce cost for infrastructure maintenance and repair.

It is characterized by high tensile strength in axial and lateral directions, low stretch rate, alkali-resistance, low temperature- resistance, as well as convenience in construction and low price. It can be used on pitch pavement to prevent cracks and prolong pavement service life. It also can be used as a basal reinforcement material for hillsides, reservoirs, harbors, ports, water channels, seawalls, etc.


Main Features of Fiberglass Geogrid for Tunnel Reinforcement:

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 for Tunnel Reinforcement:

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 for Tunnel Reinforcement:

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 Tunnel Reinforcement


IMages of Fiberglass Geogrid for Tunnel Reinforcement:

Fiberglass Geogrid for Tunnel Reinforcement

Fiberglass Geogrid for Tunnel Reinforcement

Fiberglass Geogrid for Tunnel Reinforcement

Fiberglass Geogrid for Tunnel Reinforcement

Fiberglass Geogrid for Tunnel Reinforcement


FAQ of Fiberglass Geogrid for Tunnel Reinforcement:

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:How much cheaper than steel reinforced plastic geogrid
Specifications of different prices, the general specification of 4 to 6.5 square.
Q:Can geogrids be used in reinforcement of gabion walls?
Yes, geogrids can be used in the reinforcement of gabion walls. Geogrids are commonly used to provide additional stability and strength to structures, including gabion walls. By placing geogrids within the gabion structure, it helps to distribute the forces and enhance the overall stability of the wall, making it more resistant to external pressures and potential failure.
Q:Do you need a production license for the production of geogrid?
Generally not much
Q:What is the price of 50kN two-way geogrid
There are plastic steel, but also more than 4Specializing in the production of geogrid,
Q:Are geogrids suitable for use in mechanically stabilized retaining walls?
Yes, geogrids are suitable for use in mechanically stabilized retaining walls. Geogrids are commonly used in these types of walls to provide reinforcement and improve stability. They help distribute the loads and reduce lateral movement, enhancing the overall strength and performance of the retaining structure.
Q:Are geogrids effective in reducing differential settlement?
Yes, geogrids are effective in reducing differential settlement. Geogrids provide reinforcement to soil, improving its load-bearing capacity and reducing the potential for differential settlement. By distributing the loads more evenly, geogrids help to minimize differential settlement and ensure more uniform settlement across the area.
Q:Can geogrids be used in soil reinforcement for oil and gas pipeline projects?
Yes, geogrids can be used in soil reinforcement for oil and gas pipeline projects. Geogrids are often employed in this context to provide stabilization and reinforcement to the soil, improving its load-bearing capacity and preventing soil erosion. This helps ensure the integrity and longevity of the pipeline system, making geogrids a valuable solution for soil reinforcement in oil and gas pipeline projects.
Q:What are the differences between geogrids and geopipes?
Geogrids and geopipes are both types of geosynthetics used in various construction and civil engineering applications, but they serve different purposes. Geogrids are typically made of high-strength polymer materials and are used to reinforce soil and provide stability to the ground. They are commonly used in road construction, retaining walls, slopes, and embankments to distribute loads and prevent soil erosion. Geogrids are characterized by their open-grid structure, which allows for soil interlocking and improved load distribution. On the other hand, geopipes are flexible conduits made of plastic materials and are primarily used for drainage purposes. They are designed to collect and transport excess water or other fluids from the soil or structures. Geopipes can be perforated or solid, depending on the specific drainage requirements of the project. They are commonly used in applications such as subsurface drainage, landfills, and stormwater management systems. In summary, while both geogrids and geopipes are geosynthetics used in construction, geogrids are used for soil reinforcement and stability, while geopipes are used for drainage purposes.
Q:What are the load-bearing capacities of geogrids?
The load-bearing capacities of geogrids can vary depending on factors such as the type of geogrid, its design, and the specific application. Generally, geogrids have high tensile strength and are capable of withstanding heavy loads. However, it is important to consult the manufacturer's specifications and engineering guidelines for accurate load-bearing capacity information for a particular geogrid.
Q:Can geogrids be used in reinforcement of bridge approach embankments over soft soils?
Yes, geogrids can be used in the reinforcement of bridge approach embankments over soft soils. Geogrids are commonly employed in such applications to enhance the stability and strength of the embankment by distributing the loads and reducing settlement. They provide additional tensile strength and improve the overall performance of the embankment, making it a suitable solution for addressing the challenges posed by soft soils in bridge approach embankments.

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