• Road construction PP biaxial geogrid System 1
  • Road construction PP biaxial geogrid System 2
Road construction PP biaxial geogrid

Road construction PP biaxial geogrid

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Quick Details

  • Type: Geocells

  • Place of Origin: Shandong, China (Mainland)

  • Material: HDPE, PPModel Number: TGDG

  • Material: Plastic-Steel,HDPE/PP

  • color: black etc.

  • length: 50-100m(or at request)

  • sample: available

Packaging & Delivery

Packaging Details:Standard exporting package , or as request.
Delivery Detail:within 10 days after the advanced payment.

Specifications

Road construction geogrid
1.Tensile strength:15~100KN/M
2.Color:black etc
3.Material:PP/PE
4.Certification:CE/ISO9001,14001

Road construction 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. High tensile strength, good creep resistance, chemical nature is stable;

  2. Anti-corrosive, anti-aging, anti-UV, acidproof, alkaliproof, saltproof,etc.

  3. The construction is convenient, the cycle is short and the cost is low.

Product Functions

  1. To be used in all kinds of roads, railways, airports to enhance the roadbed;

  2. To be used in a large car park and terminal freight yard, etc. to strengthen the functions of a permanent load;

  3. To be used in the protection of rail and road slope;

  4. To be used to enhance the culvert;

  5. To be used as a secondary enhancement after the uniaxial Geogrid soil enhancement, further enhance the soil, prevent soil erosion;

  6. To be used in mining, tunnel reinforcement.

Item

TGSG15-15

TGSG20-20

TGSG25-25

TGSG30-30

TGSG40-40

Longitudinal Tensile Strength,kN/m

15

20

25

30

40

Transverse Tensile Strength,kN/m

15

20

25

30

40

Longitudinal Yield Elongation,%

15

TransverseYield Elongation,%

13

Longitudinal Yield Strength at 2% Elongation,kN/m

5

7

9

11

14

Transverse Yield Strength at 2% Elongation,kN/m

5

7

9

11

14

Longitudinal Yield Strength at 5% Elongation,kN/m

7

14

17

21

30

Transverse Yield Strength at 5% Elongation,kN/m

7

14

17

21

30

Product Length/roll,m

50

40

Product width ,m

3.9/3.95/4

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 slope protection systems?
Yes, geogrids can be used in slope protection systems. Geogrids are commonly used to reinforce slopes by providing stability and preventing soil erosion. They can be installed horizontally or vertically to improve the strength of the soil and enhance the overall performance of slope protection systems.
Q:How much cheaper than steel reinforced plastic geogrid
Specifications of different prices, the general specification of 4 to 6.5 square.
Q:Can geogrids be used for reinforcement in embankments and dams?
Yes, geogrids can be used for reinforcement in embankments and dams. Geogrids are high-strength synthetic materials that are designed to enhance soil stability and prevent erosion. They are commonly used in civil engineering projects, including embankments and dams, to improve the overall strength and stability of the structures. By providing additional tensile strength to the soil, geogrids help to distribute loads more evenly, reduce settlement, and prevent soil movement.
Q:What are the benefits of using geogrids in roadways?
The benefits of using geogrids in roadways include improved load-bearing capacity, reduced pavement thickness, increased stability and durability, prevention of cracking and rutting, enhanced drainage and erosion control, and cost savings in construction and maintenance.
Q:How do geogrids improve the stability of levees?
Geogrids improve the stability of levees by providing reinforcement and increased tensile strength. These engineered materials are placed within the levee structure, creating a network of interconnected elements that distribute and withstand the forces exerted on the levee. This helps to prevent slope failure, soil erosion, and potential breaches, ultimately enhancing the overall stability and safety of the levee system.
Q:Can geogrids be used in reinforcement of embankments over soft soils?
Yes, geogrids can be used in the reinforcement of embankments over soft soils. Geogrids are commonly used in civil engineering to provide stability and strength to soil structures, including embankments. By distributing the load and reducing lateral movement, geogrids can effectively reinforce embankments over soft soils, preventing slope failure and improving overall stability.
Q:How do geogrids help in reducing construction labor requirements?
Geogrids help in reducing construction labor requirements by providing stability and reinforcement to soil, allowing for the use of thinner layers of fill material. This reduces the need for extensive excavation and material placement, thus minimizing the amount of manual labor involved in the construction process.
Q:Are geogrids suitable for coastal engineering projects?
Yes, geogrids are suitable for coastal engineering projects. They are commonly used to reinforce and stabilize coastal structures such as seawalls, breakwaters, and revetments. Geogrids provide excellent soil reinforcement, preventing erosion and enhancing the stability of coastal structures in the face of wave action and tidal forces. Furthermore, their high tensile strength and durability make them ideal for withstanding the harsh marine environment.
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:Can geogrids be used in reinforcement of mechanically stabilized earth bridge abutments on collapsible soils?
Yes, geogrids can be used in the reinforcement of mechanically stabilized earth bridge abutments on collapsible soils. Geogrids are commonly utilized in such applications to improve the stability, strength, and load-bearing capacity of the soil. They help distribute the loads more evenly, reduce settlement, and prevent soil erosion, ensuring the long-term structural integrity of the bridge abutments.

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