• Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 1
  • Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 2
  • Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 3
  • Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 4
  • Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 5
  • Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM System 6
Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM

Asphalt Reinforcement PP Plastic Biaxial Geogrid 15KN-50KN from CNBM

Ref Price:
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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
20000 m²
Supply Capability:
2000000 m²/month

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Biaxial PP Geogrid,

Biaxial geogrids are made of macromolecule polymer by the process of being stretched out, formed into lamella, punched regularly and then longitudinal and transverse elongated. They have much higher longitudinal and transverse tensile strength. These structures can supply alinking system to soil, which be used broadly to enable the permanent bearing capacity of roadbed.


PP Plastic Biaxial Geogrid 15KN-50KN from CNBM

PP Plastic Biaxial Geogrid 15KN-50KN from CNBM


Biaxial Geogrid Features:
1.  high tension resistance.
2.  high plane torsion resistance modulus.
3.  good creep resistance and stable chemical nature.
4.  high mechanic damage resistance.

5.  reduce filling thickness, improve bearing capacity.


PP Plastic Biaxial Geogrid 15KN-50KN from CNBM

PP Plastic Biaxial Geogrid 15KN-50KN from CNBM


The main function as follows:
1.Reinforce the base, efficiently allot and diffuse the pressure, prolong the using time;
2.Increase the load-bearing capabilities;
3.Avoid the base becoming deformed and creaking (for the material washed away);
4.Improve the endure, reduce the pressure of the blocking wall, save the cost, prolong the using time, and reduce the servicing;

Geogrid Features:
(1)High intension,high tenacity,high occlusive force with soil or gravel,erosion-resistant,
water drainage,light weigth.
(2)Reinforce soft soil roadbed,rib side slope of embankment,enhance isolation,
inhibit ground deformation,prevent crack by reflection,increase strength of roadbed.


FAQ:

Q: What is your MOQ?
A: Normally, 1000 m2 per order.
Q: What is your delivery time? Can we have it sooner?
A: 2 days for sample, 3-5 days against 1x40HQ
Q: What is your payment terms?
A: T/T, Paypal (3% surcharge), Western Union or 30% deposit 70% L/C.

Q: Can geogrids be used in soil stabilization for sports fields?
Yes, geogrids can be used in soil stabilization for sports fields. Geogrids are commonly used to reinforce and stabilize soil, preventing erosion and improving load-bearing capacity. They can effectively distribute loads and provide stability in sports fields, ensuring a safer and more durable playing surface for athletes.
Q: Are there any specific maintenance requirements for geogrids?
Yes, geogrids typically require regular inspection to ensure proper functioning and longevity. This may include checking for damage or deterioration, removing any debris or vegetation, and ensuring proper alignment and tension. Additionally, geogrids should be protected from excessive UV exposure and harsh environmental conditions to maintain their effectiveness.
Q: Geogrid per square meter
Now whether the procurement of products from the Internet or on the market a lot of people are asking about the price of geogrid, and around the various manufacturers offer different, people have no bottom
Q: How do geogrids help in reducing settlement of foundations?
Geogrids help in reducing settlement of foundations by providing additional reinforcement and stabilization to the soil. They are placed within the soil layers to distribute the load more evenly, increase the bearing capacity, and reduce the potential for settlement.
Q: Are geogrids resistant to chemical attack from soil contaminants?
Yes, geogrids are generally resistant to chemical attack from soil contaminants.
Q: Can geogrids be used in reinforced earth bridge abutments in liquefaction-prone areas?
Yes, geogrids can be used in reinforced earth bridge abutments in liquefaction-prone areas. Geogrids are commonly used as reinforcement materials in geotechnical engineering to improve the stability and strength of soil structures. In liquefaction-prone areas where the soil may lose its strength and become unstable during seismic events, geogrids can provide additional support to the soil and prevent its failure. By incorporating geogrids into the reinforced earth bridge abutments, the overall stability and resilience of the structure can be enhanced, making it more resistant to liquefaction-induced damage.
Q: Do geogrids increase the bearing capacity of soil?
Yes, geogrids can increase the bearing capacity of soil. Geogrids are geosynthetic materials that are used to reinforce soil and improve its stability. By distributing the load more evenly, geogrids can enhance the load-bearing capacity of the soil, making it more suitable for construction or other heavy-duty applications.
Q: See details of the application of design code for railway embankment geosynthetics TB10018-2006
The vertical and horizontal strength fracture elongation is basically on the other side of the 2 point and sometimes the strength of the joint is required!
Q: Are geogrids resistant to moisture absorption?
Yes, geogrids are generally resistant to moisture absorption. They are made from materials such as high-density polyethylene (HDPE) or polyester, which have inherent moisture resistance properties. This resistance to moisture absorption helps to maintain the stability and strength of geogrids in various construction and civil engineering applications.
Q: Can geogrids be used in geothermal energy systems?
Yes, geogrids can be used in geothermal energy systems. Geogrids are commonly used in geothermal applications to reinforce the ground and provide stability to the surrounding soil or rock mass. They can help prevent soil erosion, improve load-bearing capacity, and enhance the overall performance and efficiency of geothermal energy systems.

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