• Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation System 1
  • Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation System 2
  • Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation System 3
  • Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation System 4
Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation

Tenax Uniaxial Geogrids for Asphalt Pavement Road Consolidation

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
10000 m²
Supply Capability:
1000000 m²/month

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 Introduction :

             CMAX fibergalss geogrid is based on fiberglass woven cloth coated with modifiedd 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 pitch pavement to prevent cracks and prolong prvement service life.It also can be used as a basal reinforcement material for hillsides,reservoirs,harbors,ports,water channels,seawalls,etc.

 

Performance :

              High strength,high modulus and low temperatures resistance.

 

Applications :

              Reinforcement for road pavement

              reinforecement for railway basement

              Reinforcement for Tunnel

              Reinforcement for Slope

              Reinforcement for embankment

 

Specifications :

             

Tensile Strength(KN)Warp>30>50>60>80>100>120>150>200
Weft>30>50>60>80>100>120>150>200
        Elongation(%)<4<4<4<4<4<4<4<4
        Mesh Size (mm)25.4*25.425.4*25.425.4*25.425.4*25.425.4*25.425.4*25.425.4*25.425.4*25.4
        Width(m)1-61-61-61-61-61-61-61-6
        Length(m)50-30050-30050-30050-30050-30050-30050-30050-300
 Temperaturent Resista-100~280-100~280-100~280-100~280-100~280-100~280-100~280-100~280
Resin Content(%)18~2018~2018~2018~2018~2018~2018~2018~20
Glue TpeBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakageBitumen PVC SBR soakage

 

Asphalt Pavement Fiberglass Geogrid Made for Road Consolidation

 

  Asphalt Pavement Fiberglass Geogrid Made for Road Consolidation

Asphalt Pavement Fiberglass Geogrid Made for Road Consolidation

 

Remark: we are very large fortune 500 enterprise with more than 20branches in worldwide, and have almost ten years export experience in geosynthetic field. We have kunlun bank account and have many Iran geosynthetics customers.So if any question or support, please just feel free to contact me at any time.

 

 

Q: Can geogrids be used in subgrade improvement?
Yes, geogrids can be used in subgrade improvement. Geogrids are often used in civil engineering projects to reinforce and stabilize weak soils in the subgrade. They can help to distribute loads more evenly, increase bearing capacity, and reduce settlement. Additionally, geogrids can improve the overall performance and longevity of the subgrade, making them a valuable tool in subgrade improvement projects.
Q: Are geogrids suitable for reinforcing landfill caps?
Yes, geogrids are suitable for reinforcing landfill caps. Geogrids are commonly used in landfill engineering to enhance the stability and strength of landfill caps. They provide reinforcement and prevent the movement and erosion of soil, thereby increasing the overall efficiency and effectiveness of landfill caps in containing waste materials.
Q: What are the advantages of using geogrids in ground improvement for settlement control?
Geogrids offer several advantages in ground improvement for settlement control. Firstly, they provide reinforcement to the soil, increasing its load-bearing capacity and reducing settlement. This ensures the stability and longevity of the structure built on the improved ground. Secondly, geogrids distribute the applied load more evenly, reducing differential settlement and minimizing the risk of structural damage. Additionally, geogrids are easy to install and cost-effective compared to traditional ground improvement methods. They also have excellent durability and resistance to environmental factors, ensuring long-term effectiveness. Overall, geogrids are a reliable solution for settlement control, offering improved soil stability, reduced settlement, and cost-efficiency.
Q: Are geogrids effective in erosion control?
Yes, geogrids are effective in erosion control. They provide stability and reinforcement to soil, preventing erosion by holding the soil in place and reducing the movement of sediments. Geogrids also improve the load-bearing capacity of the soil, making them suitable for various erosion control applications such as retaining walls, slopes, and embankments.
Q: Can geogrids be used in stabilization of river training structures?
Yes, geogrids can be used in the stabilization of river training structures. Geogrids are commonly used to reinforce and stabilize soil, and they can be particularly effective in river training structures where erosion and sedimentation are common challenges. By providing additional structural support, geogrids can help prevent soil displacement, increase stability, and enhance the overall performance and longevity of these structures.
Q: Can geogrids be used in reinforced slopes?
Yes, geogrids can be used in reinforced slopes. Geogrids are often used to enhance the stability and strength of slopes by providing reinforcement and preventing soil erosion. They are commonly used in various engineering applications, including reinforced slopes, to improve slope stability and increase load-bearing capacity.
Q: What is the difference between uniaxial and biaxial geogrids?
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: Classification of plastic geogrid
Three, the application of one-way plastic geogrid:Unidirectional plastic geogrid is a kind of high strength geosynthetics. Widely used in dams, tunnels, docks, highways, railways, construction and other fields.Three, one-way plastic geogrid its main purposes are as follows:1 strengthen the roadbed, can effectively distribute the diffusion load, improve the stability and bearing capacity of the roadbed, prolong the service life;2 can withstand greater alternating load;3 to prevent the roadbed material loss caused by roadbed deformation, cracking, one-way plastic geogrid4 to make the retaining wall after the filling capacity, reduce the earth pressure of retaining wall, save cost, prolong service life, and reduce maintenance costs;5 combined with spraying anchor concrete construction method for slope maintenance, not only can save 30% - 50% investment, but also can shorten the construction period more than doubled;6 in the roadbed and surface of the road to join the geogrid, can reduce the deflection, reduce the rut, the delay time of 3 to 9 times, can reduce the structure layer thickness of up to 36%;7 applies to all kinds of soil, no need to draw materials, save time;8 the construction is simple and quick, can greatly reduce the construction cost.
Q: What criteria should be used in the construction of Geogrid
Is a reference to the construction specifications of the geogrid can be found in the library.
Q: Can geogrids be used in reinforced earth bridge abutments?
Yes, geogrids can be used in reinforced earth bridge abutments. Geogrids are commonly used in the construction of bridge abutments as they provide reinforcement and stabilization to the soil. They help distribute the load and increase the overall strength of the structure, making it more resistant to settlement and lateral forces. Geogrids are an effective solution for enhancing the stability and durability of reinforced earth bridge abutments.

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