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High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles

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High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles

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Brand Name : SZ

Model Number : TX

Certification : ISO

Place of Origin : JIANGSU,CHINA

MOQ : 10.000 square meter

Price : $0.3-$2.0/SQM

Payment Terms : L/C, T/T

Supply Ability : 10.000 square meter per day

Delivery Time : 5 -8 days. Will subject to project quantity.

Packaging Details : IN DUDE. OR CUSTOMIZED.

Product Name : Triaxial Geogrid

Application : Base Stabilization and Road Way Geogrilles

Material : PP HDPE

Feature : High tensile strength

Tensile Strength : 10-16kn

Elongation : 13-15%

Roll width : 1-6m

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Reinforcement Plastic Triaxial Geogrid for Base Stabilization and Road Way Geogrilles

Triaxial geogrid is manufactured from a punched polypropylene sheet.The triangular structure of triaxial geogrid, coupled with the increased rib thickness and junction efficiency, greatly improves aggregate interlock and confinement leading to optimal structural performance of the mechanically stabilized layer. Research indicates that triaxial geogrid canreduce aggregate base/sub-base requirements by 25% to 50%.

High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way GeogrillesHigh Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles

Comparative analysis between Triax geogrid and traditional geogrid

1. Structural Differences

Comparison Dimensions Triax geogrid Traditional Geogrid( Uniaxial/Biaxial)
Structural form 3D stretching process, triangular mesh, regular hexagonal outer contour, rectangular rib section 2D stretching process, rectangular/square grid, no 3D structure
Node design Integral stamping, node and grid integration, high plane rigidity Independent nodes, low plane stiffness
Grid mesh stability Triangular structure, strong anti-deformation ability Rectangular grid, easily deformed by force

High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way GeogrillesHigh Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles

2. Mechanical properties comparison

Index Triax Traditional
tensile strength High tensile strength (≥120kN/m) and low elongation (<5%) in longitudinal, transverse and oblique directions Unidirectional/bidirectional tensile strength, high elongation
Node validity ≥90%, nodes and ribs work together, excellent shear resistance Low, prone to failure due to node separation
Load spreading capability 360° uniform load distribution to reduce settlement differences Local concentrated load, weak settlement control effect

3. Application scenario comparison

Engineering Triax Geogrid application scenarios Traditional geogrid application scenarios
Traffic Engineering Highway/railway soft foundation treatment, wind-blown sand roadbed, high fill embankment Conventional roadbed reinforcement, bridge abutment back wall
Water Conservancy Project Anti-scouring dams and infiltration damage protection Embankment slope protection, small cofferdam
Special Geology Overlapping of new and old roadbeds, reinforcement of high slopes, and mine tailings ponds Ordinary soil slope, non-complex geology

High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way GeogrillesHigh Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way GeogrillesHigh Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles

4. Economy and durability

Comparison Dimensions Triax Geogrid Traditional Geogrid
Construction costs Reduce the thickness of the cushion layer by 36%, shorten the construction period, and reduce the overall cost Low initial cost, but requires increased cushion thickness
Durability Temperature resistance -70℃~180℃, UV resistance, corrosion resistance, lifespan > 50 years Medium durability, easy to age, lifespan is about 20~30 years
Maintenance costs High long-term stability and low maintenance requirements Frequent maintenance is required, and the cost is high

5.Summary and Suggestions for Triaxial Geogrid

  • Scenarios where three-way grids are preferred: complex geological conditions (such as soft foundation, wind-blown sand), high-load transportation projects, and projects with high long-term durability requirements.
  • Scenarios where traditional grids are applicable: projects with conventional soil, low-load projects, limited budgets, and no strict requirements for settlement control

High Strength Plastic Triaxial Geogrid For Base Stabilization And Road Way Geogrilles


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