• Geocells Philippines - High Tensile Strength Warp Knitted Geogrid for Earthwork Products System 1
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Geocells Philippines - High Tensile Strength Warp Knitted Geogrid for Earthwork Products

Geocells Philippines - High Tensile Strength Warp Knitted Geogrid for Earthwork Products

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
20000 m²
Supply Capability:
50000000 m²/month

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Fiberglass Geogrid Introduction:

 

Fiberglass geogrid is a kind of planar mesh material using alkali-free fiberglass yarn as base body and then coated with high quality modified asphalt. It is warp knitted with oriental structure which gives full play of yarn strength and improves its mechanical property to make the product high tensile, tearing and creep-resistant. Moreover, the composite property of coating with asphalt makes full protection of the fiberglass matrix and greatly improves its wear and shear resistance. All the advantageous functions make the product have a good performance in pavement strengthening, track cracking and solving difficulties of strengthening the bituminous pavement.

 

Fiberglass Geogrid Features: 

 

1. Light weight, high tensile strength, high modulus, low elongation and good toughness. 

2. Corrosion resistance, no long-term creep, long life span.

3. Good physical and chemical stability and good thermal stability.

4. Resistant to fatigue cracking, high-temperature track and low temperature shrinkage cracking.

5. Delaying and decreasing crack reflection.

 

Specifications

PET20-20

PET30-30

PET40-40

PET50-50

PET80-80

PET100-100

PET120-120

Elongation(%)

10%~15%

Vert Tensile strength(KN/m)

20

30

40

50

80

100

120

Horiz Tensile strength(KN/m)

20

30

40

50

80

100

120

Grid(mm)

12.5×12.5     20×20     24.5×24.5

Width(m)

1—6



Fiberglass Geogrid Application:

 

1. Road surface asphalt overlay construction engineering; Asphalt layers 

   reinforcement.

2. Converting old cement concrete road into composite road; Restraining 

   reflection cracking caused by block shrinkage.

3. Road extension; Preventing and controlling the cracking caused by new 

   and old combination and uneven settlement.

4. Treatment of the conjunction between tunnel and bridge or foundation.



Packaging & Shipping:

geogrid

geogrid

geogrid

geogrid

geogrid

geogrid

geogrid

geogrid

geogrid


FAQ:

 

1. How to order your geogrid ?

a) Tensile strength in warp & weft direction
b) Grid size 
c) Roll Width and length
d) Quantity

 

2. What is the Payment term?

a) TT

b) LC AT SIGHT

c) cash

d) 30% contact value as deposit ,the blance 70% be paid after received the copy of bl .

 

3. Delivery time

a) 19-25 days after received your depsit .

 

4. What is MQQ ?

a) 2500 m2  as MQQ , we can also produce sample for you .


Welcome to send your inquiry to us, and if you have any question, we can also help you.


Q: Can geogrids be used in temporary soil stabilization applications?
Yes, geogrids can certainly be used in temporary soil stabilization applications. Geogrids are commonly employed in various civil engineering projects to reinforce and stabilize soil. They provide temporary support and enhance the strength of the soil, preventing erosion and maintaining stability during construction or other temporary applications.
Q: Can geogrids be used in reinforcement of soil-lime mixtures?
Yes, geogrids can be used in the reinforcement of soil-lime mixtures. Geogrids are commonly used in civil engineering and construction projects to improve the stability and strength of soil-lime mixtures. They provide additional tensile strength, prevent soil erosion, and enhance the load-bearing capacity of the mixture. By adding geogrids, the performance and durability of soil-lime mixtures can be significantly improved.
Q: What is the effect of junction strength on geogrid performance?
The junction strength of a geogrid directly impacts its performance. A higher junction strength enhances the overall stability and load-bearing capacity of the geogrid, allowing it to effectively restrain soil movement and distribute loads. It also improves the geogrid's resistance to deformation, puncture, and tearing. In summary, a strong junction enhances the geogrid's effectiveness and durability in various geotechnical applications.
Q: Can geogrids be used in green roof systems?
Yes, geogrids can be used in green roof systems. Geogrids provide structural support and reinforcement to the green roof system, helping to distribute the weight of the vegetation and prevent soil erosion. They also enhance the overall stability and longevity of the green roof by reducing the lateral movement of the soil and preventing settlement.
Q: What are the factors that affect the tensile strength of geogrids?
The factors that affect the tensile strength of geogrids include the polymer type and quality, the manufacturing process, the grid structure and aperture size, the direction of loading, the environmental conditions, and the level of interface friction between the geogrid and the surrounding soil or other materials.
Q: What are the design considerations for geogrids in reinforced soil slopes prone to seismic activity?
Design considerations for geogrids in reinforced soil slopes prone to seismic activity include: 1. Geogrid selection: Choosing a geogrid with sufficient strength, stiffness, and durability to withstand the dynamic forces generated during seismic events is crucial. The geogrid should have high tensile strength and low elongation properties to effectively restrain the soil mass. 2. Connection details: Ensuring proper connection between the geogrid and the facing system is essential. The connection should be able to accommodate the movement and deformation of the soil during seismic events without compromising the stability of the reinforced slope. 3. Slope geometry: The slope geometry should be carefully designed to minimize the risk of failure. Factors such as slope angle, height, and overall stability need to be considered to prevent excessive stress on the geogrid and ensure it can effectively reinforce the soil. 4. Soil properties: Understanding the behavior of the soil under seismic loading is crucial for designing the geogrid reinforcement. The soil properties, such as shear strength, liquefaction potential, and settlement characteristics, should be evaluated to determine the appropriate geogrid type, spacing, and embedment depth. 5. Dynamic analysis: Conducting dynamic analysis to assess the potential response of the reinforced slope to seismic forces is important. This analysis helps in determining the required strength and stiffness of the geogrid and ensures that the slope remains stable during seismic events. 6. Construction quality control: Implementing proper construction techniques and quality control measures during geogrid installation is vital. Ensuring adequate compaction of the reinforced soil, proper connection of the geogrid to the facing system, and accurate placement of the geogrid layers are important considerations for the long-term stability of the reinforced slope in seismic-prone areas.
Q: How do geogrids improve the performance of flexible retaining walls?
Geogrids improve the performance of flexible retaining walls by providing additional reinforcement and stability to the structure. They help distribute the lateral forces exerted by the soil, reducing the pressure on the wall and preventing potential failure or deformation. Additionally, geogrids enhance the overall strength and durability of the retaining wall, allowing it to withstand higher loads and maintain its structural integrity over time.
Q: Plastic grid plate making process
Geogrid is a kind of main geosynthetics, which has unique properties and effects compared with other geosynthetics. Geogrid is often used as reinforcement of reinforced soil structure or composite material
Q: Geogrid prices, the price of geogrid, geogrid latest offer
Glass fiber grating
Q: What are the specifications of the road geogrid
Reference to the national standard, but the specifications are not necessarily the same as the national standard.

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