United Reinforced Gabion
United Reinforced Gabion
United Reinforced Gabion is specially designed for high-stress civil engineering applications for Gabion Reinforced Earth System (GRES)
The Gabion Reinforced Earth System is an engineered retaining wall solution that combines gabion facing units with geosynthetic reinforcement layers to create a stable, durable, and cost-effective earth retention structure. This system utilizes the mass and flexibility of gabions together with the tensile strength of geogrids to reinforce the soil mass, enabling the construction of high retaining walls and steep slopes.
Designed for infrastructure, transportation, industrial, and environmental projects, the Gabion Reinforced Earth System offers excellent structural performance while maintaining a natural appearance that blends seamlessly with the surrounding environment. The permeable nature of gabion facings allows efficient drainage, minimizing hydrostatic pressure and enhancing long-term stability.
United Glory Industry’s Gabion Reinforced Earth Systems are engineered to meet project-specific design requirements and are suitable for both temporary and permanent retaining structures. The system can be adapted to various site conditions, making it an ideal solution for challenging terrain and space-constrained developments.
Applications
- Highway and road embankments
- Bridge approach ramps and abutments
- Slope stabilization and landslide mitigation
- Retaining walls for commercial and residential developments
- Railway infrastructure projects
- Industrial and port facilities
- Flood mitigation and riverbank protection works
Why MSE?
Tested and Verified Tensile Strength – Engineered for demanding infrastructure projects, the reinforcement mesh delivers an ultimate tensile strength of 47 kN/m or greater, rigorously tested and fully compliant with ASTM A975-11 industry standards.
| Wire Specification | Diameter (mm) | Zinc Coating Weight (g/m2) |
|---|---|---|
| Selvedge Wire | 3.5 | 275 |
| Mesh Wire | 2.7 | 260 |
| Lacing Wire | 2.2 | 240 |