Polyester Anti-aging Geogrid for Constructional Reinforcement

Ref Price:
$0.50 - 1.50 / m²
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
50000 m²
Supply Capability:
2000000 m²/month
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Polyester Anti-aging Geogrid for Constructional Reinforcement


Description Of Polyester Anti-aging Geogrid for Constructional 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 Polyester Anti-aging Geogrid for Constructional 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 Polyester Anti-aging Geogrid for Constructional 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 Polyester Anti-aging Geogrid for Constructional 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.

Polyester Anti-aging Geogrid for Constructional Reinforcement


IMages of Polyester Anti-aging Geogrid for Constructional Reinforcement:

Polyester Anti-aging Geogrid for Constructional Reinforcement

 

Polyester Anti-aging Geogrid for Constructional Reinforcement

Polyester Anti-aging Geogrid for Constructional Reinforcement

Polyester Anti-aging Geogrid for Constructional Reinforcement

Polyester Anti-aging Geogrid for Constructional Reinforcement


FAQ of Polyester Anti-aging Geogrid for Constructional 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:
Yes, geogrids can be used in ground stabilization for water treatment plants. Geogrids are commonly utilized in the construction of retaining walls, slopes, and embankments to enhance stability and prevent erosion. In the case of water treatment plants, geogrids can be employed to reinforce the ground and provide additional support, ensuring long-term stability and preventing soil movement or failure.
Q:
Yes, geogrids can be used in soil stabilization for sports fields. Geogrids are commonly used to reinforce soil, increase its strength and stability, and prevent erosion. They can help distribute loads and minimize soil movement, making them suitable for sports fields that experience heavy foot traffic and require a stable playing surface.
Q:
Yes, geogrids are typically resistant to puncture due to their durable construction and materials used. They are designed to withstand various stresses and loads, including sharp objects and heavy loads without getting punctured.
Q:
Geogrids help in reducing the risk of soil liquefaction by providing reinforcement to the soil, improving its stability and reducing its susceptibility to liquefaction. These geosynthetic materials are typically installed within the soil to distribute and restrain the lateral forces exerted during an earthquake or other dynamic loading events. By enhancing the soil's shear strength and increasing its resistance to deformation, geogrids help to mitigate the potential for liquefaction and the associated risks such as ground settlement and structural damage.
Q:
Yes, geogrids can be used in the reinforcement of geosynthetic clay liners. Geogrids are commonly used as a secondary reinforcement layer in geosynthetic clay liners to enhance their tensile strength and improve their overall performance in various engineering applications.
Q:
Geogrids improve the performance of unpaved trails by providing reinforcement and stabilization to the soil, preventing erosion and rutting. They distribute the load more evenly, reducing the potential for sinking or shifting. Additionally, geogrids increase the tensile strength of the trail, allowing it to withstand heavy traffic and weather conditions, thus extending its lifespan and reducing maintenance needs.
Q:
Geogrids help in reducing the risk of soil erosion by providing reinforcement to the soil, increasing its stability and resistance to erosion. They are typically made of strong materials, such as plastic or polymer, and are installed beneath the topsoil or within the soil layers. Geogrids act as a barrier, distributing the load and reducing the pressure on the soil. This prevents soil particles from being washed away by water or wind, thus minimizing erosion and preserving the integrity of the landscape.
Q:
Uniaxial geogrids have strength and stiffness in one direction, making them suitable for applications requiring reinforcement in a single direction. Biaxial geogrids, on the other hand, have strength and stiffness in two perpendicular directions, allowing for reinforcement in multiple directions. This makes biaxial geogrids more versatile and applicable to a wider range of projects.
Q:
Geogrids improve the performance of geotechnical structures by providing reinforcement and enhancing stability. They distribute load more effectively, reducing soil movement and preventing erosion. Additionally, geogrids improve the overall strength and durability of structures, increasing their lifespan and reducing maintenance needs.
Q:
The effect of creep on geogrid performance is that it can cause the geogrid to gradually deform and lose its original shape and strength over time. This can result in reduced load-bearing capacity and overall effectiveness of the geogrid in stabilizing soil or reinforcing structures. Therefore, creep should be considered and accounted for in the design and selection of geogrids to ensure long-term performance and durability.

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