• Strataweb Geocells Reinforcement Geogrid for Civil Engineering Construction System 1
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Strataweb Geocells Reinforcement Geogrid for Civil Engineering Construction

Strataweb Geocells Reinforcement Geogrid for 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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Reinforcement Geogrid in Civil Engineering Construction

Introduction

1)fiberglass geogrid with CE certificate

2)Materials:fiberglass

3) Tensile strength:MD/CD:30 ~ 200kn/m

4)WIdth:1 ~ 6m

Temperature Resistance (Centigrade): -100~290

Surface Processing: Modified asphalt or Polymer and self adhesive

Packing: With PE bags

WEIGHT

300G/SQM

500G/SQM

ELONGATION AT BREAK

3%

3%

TENSILE STRENGTH IN KNOT

5KN/M

10KN/M

WIDTH:

1--6M

1--6M

Fiberglass geogrid is a kind of new favorable earthwork base material to strengthen the road surface and roadbed. This product is composed of fiberglass filaments that are coated with an inorganic sizing agent


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: What are the differences between three different types of geogrids?Unidirectional geogrid, two-way geogrid plastic, geogrid, warp knitted geogrid and fiberglass geogridWhich is the best place in Guangzhou geogrid Zhejiang geogrid in Tianjin?
Steel plastic geogrid, fiberglass geogrid, polyester geogrid, etc., according to the direction of stress is divided into one-way
Q: Peel force mainly in the size of raw materials
Depends on the strength of the welding point
Q: What are the factors that affect the tensile strength of geogrids?
The factors that affect the tensile strength of geogrids include the material composition, manufacturing process, aperture size, junction strength, and the presence of any defects or damage. Additionally, external factors like temperature, humidity, and exposure to chemicals or UV radiation can also impact the tensile strength of geogrids.
Q: Definition of GeotextilesWhat are what material, what role
Geotextiles and geotextile, which is permeable geosynthetic materials made of synthetic fiber by acupuncture or woven cloth. The finished product is the general shape, width of 4-6 meters, the length of 50-100 meters. Geotextiles are divided into nonwoven geotextiles and geotextile geotextile. The cloth has excellent filtration, isolation, reinforcement and protection function, high tensile strength, good permeability, high temperature resistance, anti freezing, aging resistance, corrosion resistance.
Q: What is the effect of creep rupture on geogrid performance?
The effect of creep rupture on geogrid performance is detrimental as it leads to a significant decrease in the geogrid's strength and stability over time. Creep rupture refers to the gradual elongation or deformation of a material under constant load, which can eventually result in the geogrid failing and losing its ability to provide reinforcement or confinement. This can compromise the overall integrity and effectiveness of the geogrid in various civil engineering applications, such as soil stabilization, slope reinforcement, or retaining wall construction. Therefore, managing and minimizing creep rupture is crucial to maintaining the long-term performance and durability of geogrids.
Q: How do geogrids improve the stability of earth retaining structures?
Geogrids improve the stability of earth retaining structures by providing reinforcement and enhancing the overall strength of the soil. They distribute the loads more evenly, reduce soil movement, and prevent potential failures such as slope erosion or wall collapse. Additionally, geogrids increase the bearing capacity of the soil, making it more resistant to lateral forces and improving the overall stability of the structure.
Q: What is the difference between nonwoven geotextiles and geotextile? What is their role?
Effect: usually used for maintenance, reverse filtration, etc..
Q: Is it the same thing as two way tgsg30-30 geogrid and two - way plastic geogrid
Biaxial stretching plastic geogrid is a general term, it can also be called biaxial tensile polypropylene geogrid";
Q: How do geogrids improve the stability of mechanically stabilized earth walls?
Geogrids improve the stability of mechanically stabilized earth walls by enhancing the soil's tensile strength and preventing lateral movement. They act as a reinforcement, distributing the applied loads more evenly throughout the structure and reducing the potential for wall failure. Additionally, geogrids increase the frictional resistance between the soil and the wall, effectively increasing the overall stability and performance of the structure.
Q: Can geogrids be used in erosion control applications on steep slopes?
Yes, geogrids can be used in erosion control applications on steep slopes. Geogrids are often used to reinforce soil and prevent erosion by providing stability and support to the slope. They can effectively distribute loads and reduce the risk of slope failure, making them suitable for erosion control on steep slopes.

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