• HPA Geocells for Slope Stabilization with CE Certificate for Construction System 1
  • HPA Geocells for Slope Stabilization with CE Certificate for Construction System 2
  • HPA Geocells for Slope Stabilization with CE Certificate for Construction System 3
HPA Geocells for Slope Stabilization with CE Certificate for Construction

HPA Geocells for Slope Stabilization with CE Certificate for Construction

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
85800 m²
Supply Capability:
1000000 m²/month

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 The Description of  Geogrid for slope stabilization

           Geogrid for slope stabilization is a kind of new favorable earthwork base material to strengthen the road surface and roadbed. This product is made by weaving and covering fiberglass filament. It is featured by high vertical and horizontal tensile strength, low unit extension, high flexibility, and favorable high and low temperature resistance. The products after surface covering own the favorable property of alkali resistance and aging resistance.

 

The details of  Geogrid for slope stabilization

 

Type:GeogridMaterial:

geogrid for slope stabilization

Place of Origin:China (Mainland)
Certificates:CE,ISOColor  :White & BlackWidth :1m--6m
Length50-200mMesh Size:10-40mmTensile Strength30KN-300KN
Area Weight130-900g/smPackage

PP bags or  

    PE film

Approximate     mesh size

12.7*12.7          

 25*25               

 40*40

 

Packaging & Delivery

 

Packaging DetailsPP bags or PE film. Or Packed as customers' requests;
Delivery Detail10-20days after see the payment.

 

 

 

Geogrid for Slope Stabilization with CE Certificate  for Construction

Geogrid for Slope Stabilization with CE Certificate  for Construction

Geogrid for Slope Stabilization with CE Certificate  for Construction

 

        

Remarks: we are very large fortune 500 enterprise with more than 20branches in worldwide, and have almost ten years export experience in geosynthetic field. We have kunlun bank account and have many Iran geosynthetics customers.So if any question or support, please just feel free to contact me at any time.

Q:Can geogrids be used in mining applications?
Yes, geogrids can be used in mining applications. They are often employed to reinforce soil and prevent erosion in mining operations, stabilize slopes, and improve the structural integrity of mine walls and embankments. Geogrids can also aid in the construction of access roads, haul roads, and mine tailing dams, providing enhanced stability and load-bearing capacity.
Q:Polyester warp knitted polyester geogrid and glass fiber geogrid price difference in the price of many components is a ghost?
Different specifications and models can not compare the price, generally speaking, the same specifications, more expensive than glass fiber
Q:Geogrid specification TGSG40-40 what meaning
All kinds of plastic geogrid, steel plastic composite geogrid, glass fiber geogrid, warp knitted polyester geogrid, geotextile composite geomembrane, bentonite waterproof blanket, a new 3D Geomat, geocell and other engineering materials.
Q:Where the geogrid is the cheapest! Plastic fiber polyester fiberglass geogrid there?
The plastic geogrid is a kind of polymer material with square or rectangular shape which is formed by stretching, and it can be used as two kinds of uniaxial tension and biaxial tension. The utility model is punched on the extruded polymer plate (raw material is polypropylene or high-density polyethylene), and then directionally stretched under the heating condition. The unidirectional stretching grid is only drawn along the length direction of the plate, and the bidirectional stretching grid is made by stretching the unidirectional stretching grid in the direction perpendicular to the length.
Q:What is the typical length of a geogrid roll?
The typical length of a geogrid roll can vary depending on the manufacturer and specific application. However, in general, geogrid rolls are commonly available in lengths ranging from 50 to 500 feet.
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 design of geogrid installations?
There are several factors that can influence the design of geogrid installations. These include soil type and characteristics, slope stability, anticipated loads and traffic, climate and environmental conditions, project requirements and specifications, and available construction equipment and techniques. Each of these factors must be carefully considered to ensure the successful design and implementation of geogrid installations.
Q:Do geogrids reduce the amount of fill material required?
Yes, geogrids can reduce the amount of fill material required. Geogrids are designed to improve soil stability and reinforce the fill material. By distributing the load more efficiently, geogrids allow for the use of thinner layers of fill material, thus reducing the overall amount needed. This can result in cost savings and more sustainable construction practices.
Q:How are geogrids installed in the field?
Geogrids are typically installed in the field by first preparing the soil surface and removing any debris or vegetation. The geogrid is then rolled out and placed on top of the prepared soil. It is important to ensure that the geogrid is properly aligned and overlapping if multiple rolls are being used. The edges of the geogrid are then securely anchored using stakes or pins to prevent movement during installation. Finally, the soil is backfilled and compacted over the geogrid to provide additional support and load distribution.
Q:How do geogrids help in reducing construction material consumption?
Geogrids help in reducing construction material consumption by providing reinforcement and stabilization to soil or aggregates, allowing for the use of thinner layers of materials. This reduces the overall amount of materials required for construction, leading to cost savings and more sustainable practices.

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