Basalt Geogrid

Basalt Geogrid Mesh

Basalt geogrid mesh is a semi-rigid reinforcement made from basalt fiber yarns via warp-knitting. It offers high tensile strength, low elongation, corrosion resistance, and thermal stability. Used for pavement, soil stabilization, and wall reinforcement, it enhances load capacity, prevents cracking, and extends pavement life. Lightweight and asphalt-compatible, it effectively replaces metal mesh.

Project SupportSelection · Specification · Installation
Supply OptionsStandard · OEM · Custom Production

PRODUCT DETAILS

High-Strength Basalt Fiber Structure

Superior Material Composition & Warp-Knitting Process

Manufactured from alkali and acid-resistant basalt fiber yarns using precision warp-knitting technology, the mesh achieves high tensile strength in both warp and weft directions. This semi-rigid structure ensures consistent load distribution and effective crack control within pavement and soil systems, delivering long-term engineering reliability and reduced maintenance requirements.


Excellent Reinforcement Performance

Enhancing Bearing Capacity and Structural Integrity

The basalt geogrid significantly improves load-bearing capacity when applied to road embankments on weak foundations. Its low creep characteristics and high elastic modulus ratio (24:1 compared to asphalt concrete) minimize pavement rutting and reflective cracking. This performance directly translates to extended service life, lower lifecycle costs, and improved safety for highways, airports, and industrial flooring.


Effective Separation and Drainage Function

Optimizing Soil Stabilization and Erosion Control

Beyond reinforcement, the grid provides effective separation between aggregate layers and facilitates lateral drainage, reducing pore water pressure in slopes and retaining walls. This multifunctional capability enhances soil confinement, prevents erosion on embankments and trenches, and supports durable two-layer wall constructions, making it a versatile solution for geotechnical engineering challenges.


Product Information

Item Details
Raw Material Basalt fiber yarns with impregnation coating
Types / Models BG3030, BG5050, BG8080, BG100100, BG120120, BG150150, BG200200
Width 2.0 m, 3.95 m, 5.95 m
Length 50 m, 100 m
Mesh Size 12.7×12.7 mm, 25.4×25.4 mm, 40×40 mm, 50×50 mm
Coating Bitumen
Packaging PE bags / Woven bags with colored tape
Certificates ISO9001, CE, SGI, TRI, SGS

Properties Of Basalt Geogrid Mesh

01

High Fracture Strength

Delivers reliable reinforcement under heavy structural loads

02

Low Elongation Rate

Maintains geometric stability under tensile stress

03

Corrosion & Alkali Resistance

Performs durably in aggressive soil and chemical environments

04

High-Temperature Endurance

Retains properties during hot-mix asphalt placement

Advantages Of Basalt Geogrid Mesh

Advantages 1
High tensile strength and low elongation ensure superior load distribution, structural stability, and long-term performance in demanding pavement and foundation applications.
Advantages 2
Excellent resistance to alkali, acid, corrosion, and high-temperature environments enables reliable use in asphalt overlays and aggressive soil conditions.
Advantages 3
Lightweight construction (seven times lighter than metal mesh) simplifies handling, reduces transport costs, and speeds on-site installation.
Advantages 4
Extends asphalt pavement service life by preventing reflective cracking, minimizing rutting, and reducing overall maintenance and repair frequency.

Basalt Geogrid Mesh Technical Specification

The following technical specification provides essential performance data for engineering selection, quality verification, and project compliance. These values are derived from standardized test methods to ensure reliable comparison and application-specific design.

Property Test Method Unit BG3030 BG5050 BG8080 BG100100 BG120120 BG150150 BG200200
Ultimate Tensile Strength (MD) EN ISO 10319 kN/m 30 50 80 100 120 150 200
Ultimate Tensile Strength (CD) kN/m 30 50 80 100 120 150 200
Elongation at Max Load (MD) % 3 3 3 3 3 3 3
Elongation at Max Load (CD) % 3 3 3 3 3 3 3

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