Uniaxial HDPE Geogrid 35-300 kN/m (5,000-43,500 lb/ft) for Retaining Walls Steep Slopes Embankments Bridge Abutments Landslide Repair
Significant Cost Savings: Reduces overall project investment by 30%–50% in slope maintenance and retaining wall construction by decreasing earth pressure and minimizing the need for imported fill materials.
Accelerated Construction: Shortens project schedules by over 50% compared to traditional methods, as the simple installation process requires less heavy machinery and labor.
Minimal Creep Deformation: Engineered with high molecular orientation to ensure extremely low long-term creep under sustained loads, guaranteeing decades of reliable performance.
Enhanced Load Distribution: Utilizes an advanced interlocking mechanism with soil to rapidly disperse localized stresses across a wider area, effectively preventing embankment deformation and cracking.
Extended Service Life: Manufactured with premium HDPE and UV-stabilized additives to withstand harsh environmental conditions, extending infrastructure lifespan to 15–30 years or more.
隐藏域元素占位
- Product Description
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- Commodity name: Uniaxial HDPE Geogrid 35-300 kN/m (5,000-43,500 lb/ft) for Retaining Walls Steep Slopes Embankments Bridge Abutments Landslide Repair
Superior Tensile Strength: Delivers exceptional uniaxial tensile strength ranging from 35 to 300 kN/m (5,000 to 43,500 lb/ft) to provide robust structural support for retaining walls and steep slopes.<br/> Significant Cost Savings: Reduces overall project investment by 30%–50% in slope maintenance and retaining wall construction by decreasing earth pressure and minimizing the need for imported fill materials.<br/> Accelerated Construction: Shortens project schedules by over 50% compared to traditional methods, as the simple installation process requires less heavy machinery and labor.<br/> Minimal Creep Deformation: Engineered with high molecular orientation to ensure extremely low long-term creep under sustained loads, guaranteeing decades of reliable performance.<br/> Enhanced Load Distribution: Utilizes an advanced interlocking mechanism with soil to rapidly disperse localized stresses across a wider area, effectively preventing embankment deformation and cracking.<br/> Extended Service Life: Manufactured with premium HDPE and UV-stabilized additives to withstand harsh environmental conditions, extending infrastructure lifespan to 15–30 years or more.
Key Technical Advantages
⚙️ Directional Molecular Alignment: The uniaxial stretching process creates a highly oriented linear polymer structure, forming uniform, high-strength elliptical ribs that maximize tensile capacity in the primary stress direction.
🔗 Superior Soil-Geogrid Interlock: The precisely designed aperture geometry creates a highly efficient mechanical interlock with aggregate and soil, acting as a robust stress-transfer mechanism to stabilize the entire mass.
🛡️ Exceptional Chemical & Biological Resistance: High-Density Polyethylene (HDPE) formulation ensures complete resistance to soil chemicals, biological degradation, and environmental stress cracking, making it ideal for aggressive soil environments.
📉 Low Strain Modulus: Provides high stiffness at low strain levels (typically 2% to 5% elongation), ensuring that the reinforcement actively engages to support loads before significant soil deformation occurs.
🌍 Advanced Durability Formulation: Integrated carbon black and antioxidant additives provide superior resistance to ultraviolet (UV) radiation and long-term oxidative aging, maintaining structural integrity during prolonged exposure.
Basic Info.
Technical SpecificationsItem Unit TG-DG 50 TG-DG 80 TG-DG 100 TG-DG 110 TG-DG 120 TG-DG 150 TG-DG 170 TG-DG 200 TG-DG 220 Ultimate Tensile Strength ≥ kN/m 50 80 100 110 120 150 170 200 220 Ultimate Tensile Strength ≥ lbf/ft 3,426 5,482 6,852 7,537 8,223 10,278 11,649 13,704 15,075 Maximum Elongation ≤ % 10 10 10 10 10 10 10 10 10 Tensile Strength at 2% Elongation ≥ kN/m 12 21 26 29 38 41 52.5 60 64 Tensile Strength at 2% Elongation ≥ lbf/ft 822 1,439 1,782 1,987 2,604 2,809 3,597 4,111 4,385 Tensile Strength at 5% Elongation ≥ kN/m 23 40 50 55 75.5 81 103 110 127 Tensile Strength at 5% Elongation ≥ lbf/ft 1,576 2,741 3,426 3,769 5,173 5,550 7,058 7,537 8,702
Application Solutions🧱 Retaining Walls (MSE)
Challenge: Traditional concrete retaining walls are expensive, rigid, and highly susceptible to differential settlement and structural cracking under heavy lateral earth pressures.
Solution: Uniaxial HDPE geogrids act as tensile reinforcement layers within the backfill, transforming the soil mass into a coherent, flexible gravity structure. This reduces lateral earth pressure on the wall face, allows for steeper slopes, and significantly cuts material and labor costs.
⛰️ Steep Slopes
Challenge: Constructing steep slopes in weak soils often leads to severe surface erosion, shallow sloughing, and catastrophic slope failures during heavy rainfall or seismic events.
Solution: Reinforcing the soil with high-strength geogrids (up to 300 kN/m / 43,500 lb/ft) increases the shear strength of the soil mass. This allows for slope angles up to 70 degrees, prevents deep-seated failures, and facilitates rapid vegetative face treatments for permanent erosion control.
🛤️ Embankments over Soft Soil
Challenge: Building high embankments over soft, compressible subgrades frequently results in excessive settlement, bearing capacity failure, and costly, time-consuming pre-loading periods.
Solution: The geogrid provides basal reinforcement that distributes vertical loads over a wider area, improving global stability and accelerating consolidation. This enables the construction of higher embankments safely while reducing the required thickness of imported structural fill.
🌉 Bridge Abutments
Challenge: The transition zone between rigid bridge structures and flexible approaching roadways is prone to severe differential settlement, causing dangerous "bumps" at the end of the bridge and structural stress.
Solution: Integrating uniaxial geogrids into the approach embankment creates a stiffened, unified soil block that seamlessly transitions the load. This effectively mitigates differential settlement, protects the bridge foundation from lateral shifting, and drastically reduces long-term maintenance.
🚧 Landslide Repair & Stabilization
Challenge: Restoring failed slopes or stabilizing active landslide zones requires rapid, reliable reinforcement that can withstand complex, multi-directional subsurface stresses without adding excessive dead load.
Solution: High-tensile HDPE geogrids are installed in horizontal layers to mechanically pin the unstable soil mass to stable underlying strata. The lightweight nature of the geogrid prevents overloading the failing slope, while its high strength restores the factor of safety to acceptable levels rapidly.
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