• PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China System 1
  • PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China System 2
  • PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China System 3
  • PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China System 4
  • PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China System 5
PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China

PP Plastic Polypropylene Geogrid Biaxial in Civil Engineering Construction Made in China

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
1000 m²
Supply Capability:
10000000 m²/month

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PP Plastic Polypropylene Geogrid Biaxial  in Civil Engineering Construction Made in China


Product Introduction

CNBM offers geogrids for base reinforcement. They are manufactured by welding or stitching together two layers of extruded, polypropylene, flexible geogrids to create a continuous sheet that will not separate.


PP Plastic polypropylene geogrid biaxial

The properties of  Biaxial Geogrids, made in Polypropylene (PP) with their square apertures, high tensile strength and optimised geometry of nodes and ribs make them equal to any other similar material. 



Our Service

Quality assurance
1.On a regular basis or as per your request,we entrust national testing agencies to conduct quality inspections
2. Strictly in accordance with the ISO9001-2008 international quality system standard,we monitor and manage the whole process throughout production,quality testing,and measurement to ensure product quality
3. For quality-related construction delay or substandard construction(except for damage or losses due to customer’s responsibility or irresistible natural disasters),we have refunding,replacement,and repair services.We will respond to customers’ feedbacks on quality issues within 24 hours.

Packaging & Shipping

Packing: PLASTIC FILM INSIDE, AND WOVEN BAG OUTSIDE
Shipping: About 15 days after receipt the deposit

 

FAQ:

Q: What kind of payments does jenor support?
A: T/T, L/C, Cash are accepted.
Q: Do you charge for the samples? 
A: Accordeing to our company policy, the samples are free, we only charge the freight fee. And we will return the freight fee during the next order. 
Q: Can you produce according to customers' design? 
A: Sure, we are professional manufacturer, OEM and ODM are both welcome.
Q: Do you have other products?
A: Yes, please check the pictures:

 


Q:How do geogrids improve the performance of mechanically stabilized slopes in cold climates?
Geogrids improve the performance of mechanically stabilized slopes in cold climates by enhancing the stability and reinforcement of the soil structure. They provide additional tensile strength to the soil, preventing slope failures caused by frost heave, thaw settlement, and freeze-thaw cycles. Geogrids also distribute the loads more evenly, reducing the risk of slope deformation and improving long-term performance in cold weather conditions.
Q:What is the meaning of reinforced subgrade? Is there a geogrid type on the road?
Some of them may be designed to be made of geocell and geotechnical net. Mainly depends on how you design.
Q:Are geogrids suitable for use in saline environments?
Yes, geogrids are suitable for use in saline environments. Geogrids are typically made of high-strength polymers that are resistant to corrosion and degradation caused by saline environments. Additionally, they have been extensively used in coastal and marine engineering projects where they are exposed to saltwater and have shown excellent performance and durability. Therefore, geogrids can be a reliable and effective solution for reinforcing soil structures in saline environments.
Q:EG90R what is the geogrid material?
One way pull plastic geogrid, also called one-way plastic geogrid
Q:Can geogrids be used in soil reinforcement for landslide mitigation?
Yes, geogrids can be used in soil reinforcement for landslide mitigation. Geogrids are commonly used to enhance the stability and strength of soil, including in slope stabilization and landslide prevention. They are placed within the soil mass to provide reinforcement and improve its load-bearing capacity, reducing the risk of landslides.
Q:Can geogrids be used in coastal protection projects?
Yes, geogrids can be used in coastal protection projects. Geogrids are commonly employed in coastal engineering to stabilize soil, prevent erosion, and enhance the stability and performance of coastal structures such as revetments, breakwaters, and seawalls. They help in reinforcing the soil, reducing wave energy, and improving the overall resilience of coastal areas against erosion and storm events. Thus, geogrids are a valuable tool in coastal protection projects.
Q:Are geogrids effective in preventing soil erosion on coastal cliffs?
Yes, geogrids are effective in preventing soil erosion on coastal cliffs. Geogrids provide structural support to the soil and enhance its stability, reducing the risk of erosion caused by wave action and weathering. They help to distribute the forces exerted on the soil and prevent surface runoff, thereby protecting the cliffs from erosion and maintaining their integrity.
Q:What is the effect of confinement on geogrid performance?
The effect of confinement on geogrid performance is generally positive. Confinement provides additional support and improves the load-bearing capacity of geogrids. It helps to distribute the load more evenly, reduces lateral movement, and enhances the overall stability of the geogrid system. Confinement can increase the tensile strength and stiffness of the geogrid, allowing it to withstand higher loads and provide better reinforcement.
Q:What are the factors that affect the design and selection of geogrids for geosynthetic reinforcement of reinforced soil slopes?
There are several factors that affect the design and selection of geogrids for geosynthetic reinforcement of reinforced soil slopes. These factors include the slope height and angle, soil properties, loading conditions, and durability requirements. The geogrid should be chosen based on its strength, stiffness, and interaction with the soil to effectively distribute the applied loads and retain the soil mass. Additionally, factors such as installation constraints, cost, and availability also play a role in the selection process. Overall, a comprehensive understanding of the project requirements and a thorough analysis of these factors are essential for the successful design and selection of geogrids for reinforced soil slopes.
Q:What is the effect of moisture on geogrid performance?
Moisture can have a significant impact on geogrid performance. When geogrids are exposed to moisture, they may experience reduced tensile strength and stiffness, as well as increased elongation and creep deformation. Moisture can also lead to the degradation of geogrid materials, especially if they are not resistant to chemical or biological attack. Additionally, moisture can affect the interaction between geogrids and the surrounding soil, potentially reducing their effectiveness in providing soil reinforcement or confinement. Therefore, it is important to consider and mitigate the effects of moisture when using geogrids in engineering applications.

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