• Roadbed Geogrid in Civil Engineering Construction System 1
  • Roadbed Geogrid in Civil Engineering Construction System 2
  • Roadbed Geogrid in Civil Engineering Construction System 3
  • Roadbed Geogrid in Civil Engineering Construction System 4
Roadbed Geogrid in Civil Engineering Construction

Roadbed Geogrid in Civil Engineering Construction

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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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Roadbed Geogrid in Civil Engineering Construction

Introduction

WEIGHT

300G/SQM

500G/SQM

ELONGATION AT BREAK

3%

TENSILE STRENGTH IN KNOT

5KN/M

10KN/M

WIDTH:

1--6M

Features:

1. High tensile strength in warp and across directions

2. Low Elongation

3. High flexibility

4. High and low temperature resistance

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:Are geogrids effective in stabilizing embankments for pipeline crossings?
Yes, geogrids are effective in stabilizing embankments for pipeline crossings. Geogrids provide reinforcement and enhance the stability of the soil, reducing the risk of embankment failure. By distributing loads and increasing the bearing capacity of the soil, geogrids help to prevent settlement and movement, ensuring the long-term stability of the embankment for pipeline crossings.
Q:How do geogrids help in reducing the environmental impact of construction?
Geogrids help in reducing the environmental impact of construction by providing stabilization and reinforcement to the soil, leading to a reduction in the amount of excavation and land disturbance required. This helps to minimize the need for additional resources and materials, as well as the overall carbon footprint of the construction project. Additionally, geogrids can enhance the longevity of structures, reducing the need for frequent repairs or replacements, further minimizing the environmental impact.
Q:What are the factors to consider when selecting a geogrid for a specific application?
When selecting a geogrid for a specific application, there are several factors that need to be considered. These include the required strength and stiffness of the geogrid, the type and condition of the soil being reinforced, the anticipated loads and stresses the geogrid will be subjected to, the desired design life of the structure, and any environmental or chemical factors that may affect the performance of the geogrid. Additionally, factors such as installation and maintenance requirements, cost, and availability should also be taken into account. Overall, a thorough analysis of these factors will help in selecting the most suitable geogrid for the application at hand.
Q:How do geogrids improve the stability of mechanically stabilized earth walls?
Geogrids improve the stability of mechanically stabilized earth walls by providing reinforcement and increasing the tensile strength of the soil. They act as a stabilizing element, distributing the forces and preventing the soil from shifting or sliding. Geogrids also improve the overall bearing capacity of the wall, allowing for the construction of taller and more stable structures.
Q:Are geogrids resistant to hydrolysis?
Yes, geogrids are generally resistant to hydrolysis.
Q:Can geogrids be used in stabilization of mine waste dumps?
Yes, geogrids can be used in the stabilization of mine waste dumps. Geogrids are commonly used in geotechnical engineering to reinforce soil and provide stability to various structures, including mine waste dumps. By incorporating geogrids into the design and construction of mine waste dumps, the overall stability and integrity of the dump can be significantly improved, reducing the risk of slope failures and erosion. Geogrids help distribute loads, increase bearing capacity, and enhance the overall performance of the dump, making them an effective solution for stabilization in mine waste management.
Q:How do geogrids help in reducing the risk of differential settlement of structures?
Geogrids help in reducing the risk of differential settlement of structures by providing reinforcement and stability to the soil. They distribute the load over a larger area, preventing localized settlement and ensuring a more uniform settlement across the structure. This helps to maintain the integrity and stability of the structure, reducing the risk of differential settlement and potential damage.
Q:Can geogrids be installed on steep slopes?
Yes, geogrids can be installed on steep slopes. Geogrids are commonly used in slope stabilization and reinforcement projects, including on steep slopes. They help enhance soil stability and prevent erosion, making them suitable for installation on steeper slopes where erosion and soil instability may be more prominent.
Q:What is the effect of moisture on geogrid performance?
Moisture can have both positive and negative effects on geogrid performance. On one hand, moisture can enhance the interlock between the geogrid and the surrounding soil, improving its overall stability and load-bearing capacity. This is particularly beneficial in clayey or cohesive soils where moisture helps to increase the soil's strength and reduce its potential for settlement. On the other hand, excessive moisture can lead to the loss of geogrid strength due to hydrolysis or chemical degradation, especially in certain polymer-based geogrids. Additionally, waterlogged conditions can increase the likelihood of soil erosion, reducing the effectiveness of the geogrid in retaining soil particles. Therefore, while some moisture is generally beneficial, proper drainage and moisture control are crucial factors to consider for optimal geogrid performance.
Q:How to do this in the geogrid in the retaining wall? Is there any remedy?
Thermal stability - the melting temperature of the glass fiber is above 1000 DEG C, which ensures the stability of the fiberglass geogrid in the paving operation.

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