• Geogrids and Soil Stabilisation Materials - Top Quality High Tensile Plastic Geogrid System 1
  • Geogrids and Soil Stabilisation Materials - Top Quality High Tensile Plastic Geogrid System 2
Geogrids and Soil Stabilisation Materials - Top Quality High Tensile Plastic Geogrid

Geogrids and Soil Stabilisation Materials - Top Quality High Tensile Plastic Geogrid

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Payment Terms:
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Quick Details

  • Type: Geocells

  • Place of Origin: Shandong, China (Mainland)

  • Brand Name: Hongxiang

  • Model Number: TGDG

  • Material: HDPE, PP

  • Material: Plastic-Steel,HDPE/PP

  • color: black etc.

  • length: 50-100m(or at request)

Packaging & Delivery

Packaging Details:Standard exporting package , or as request
Delivery Detail:about 7 working days

Specifications

Geogrid
1.Tensile strength: 15~100KN/M
2.Color:black and etc.
3.Material:PP/PE
4.Certificate:CE/ISO9001,14001

Geogrid :

Specification  

Double-direction geogrid is made of high molecular polymer through extrusion, forming and punching before longitudinal and lateral stretching. This material has considerable tensile strength in longitudinal and lateral directions. This chain structure can effectively bear and diffuse forces on soil and is applicable to large area permanent load bearing foundation as a reinforce.

Biaxial geogrid is made of pp/pe,mainly applied in highway, railway, slope protecting project
Product Features  
1. Increase the bearing capacity of the roadbed and foundation and prolong their service life.
2. Prevent road surface and foundation from sinking or flawing, keep clean and beautiful ground surface.
3. Convenient construction saves time and labor, reduce mounting time and decrease maintenance expense.
4. Prevent culverts from flawing.
5. Enhance earth slope and prevent water loss and soil erosion.
6. Decrease underlayer thickness and save manufacturing cost.
7. Size & Specification

Name:Geogrid (BX) Geogrid BX Geogrid
Biaxial geogrid
Note:

Dimensions and Properties

Typical Dimensions mm

KN

2020LKN

KN

3030LKN

KN

4040LKN

Pmd

40

65

40

60

33

54

Pld

40

65

40

60

33

54

Wmd

2.0

3.3

2.2

3.3

2.3

3.5

Wld

2.4

4.0

2.7

4.0

2.6

4.5

Tj

4.1

4.3

4.3

6.5

5.5

7.5

Tmd

1.0

1.0

2.0

1.5

2.3

1.8

Tld

0.8

0.9

1.4

1.4

2.0

1.6


Q: Can geogrids be used in landfill applications?
Yes, geogrids can be used in landfill applications. Geogrids are commonly used in landfill construction to improve the stability and performance of the landfill liner system. They help in reducing the potential for soil erosion, enhancing the load-bearing capacity, and providing reinforcement to the liner system.
Q: How do geogrids improve the stability of cut slopes?
Geogrids improve the stability of cut slopes by reinforcing the soil and preventing erosion. When placed within the soil, geogrids provide tensile strength and distribute the forces acting on the slope, reducing the risk of slope failure. They also enhance the overall stability by increasing the shear strength of the soil, minimizing displacement and potential sliding. Additionally, geogrids help to control water infiltration, reducing pore pressure and preventing saturation, which can further compromise the stability of cut slopes.
Q: What is the recommended depth of geogrid installation?
The recommended depth of geogrid installation depends on various factors such as soil conditions, load requirements, and project specifications. However, a general guideline is to install geogrids at a depth of at least 12 inches below the surface to ensure sufficient reinforcement and stability.
Q: What are the factors affecting the design of geogrid-reinforced structures?
The factors affecting the design of geogrid-reinforced structures include the type and properties of the soil, the load and magnitude of the forces acting on the structure, the desired level of stability and performance, the site conditions and constraints, and the specific design standards and guidelines applicable to the project.
Q: How do geogrids help in reducing the use of natural resources?
Geogrids help in reducing the use of natural resources by providing reinforcement and stabilization to soil structures. They allow for the use of less soil and aggregate materials in construction projects, reducing the need for excavation and mining of natural resources. Additionally, geogrids improve the durability and longevity of structures, reducing the need for frequent repairs or replacements, further conserving natural resources.
Q: What is the difference between Geogrid and geogrid
Glass fiber mesh used in exterior wall, interior wall paint, mainly to prevent cracking, different materials at the junction of mortar plastering material hollowing. Local node reinforcement will also be used. Geotextile has excellent filtration, drainage, isolation, reinforcement, seepage prevention, protection, light weight, high tensile strength, good permeability, high temperature resistance, anti freezing, anti-aging, corrosion resistance. Common non-wovenUsed in the water layer, polyethylene polypropylene fiber waterproof is also used.
Q: What is the tensile strength of a geogrid?
The tensile strength of a geogrid refers to its ability to withstand pulling forces without breaking. It is typically measured in units of force per unit of width, such as kilonewtons per meter (kN/m). The specific tensile strength of a geogrid can vary depending on its material composition and design.
Q: What is the typical geogrid roll weight for specific applications?
The typical geogrid roll weight for specific applications can vary depending on the specific requirements and design considerations of the project. However, geogrid rolls used in common applications such as soil stabilization or retaining wall construction typically range from 20 to 100 pounds per roll.
Q: How do geogrids enhance the performance of geosynthetic clay liner capillary barriers?
Geogrids enhance the performance of geosynthetic clay liner capillary barriers by providing additional reinforcement and stability to the liner. They help distribute loads more evenly, increase tensile strength, and reduce the potential for deformation or failure of the liner system. Additionally, geogrids assist in controlling lateral movement and prevent the loss of clay particles, ensuring better long-term performance and effectiveness of the capillary barrier.
Q: How do geogrids improve soil stabilization?
Geogrids improve soil stabilization by providing reinforcement to the soil. They are designed to distribute and transfer loads across a wider area, reducing the stress on the soil. This helps to prevent soil erosion, improve slope stability, and enhance overall soil performance. Geogrids also increase the shear strength of the soil, allowing it to withstand higher loads and resist deformation.

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