Uniaxial HDPE Geogrid 35-300 kN/m (5,000-43,500 lb/ft) for Geotechnical Reinforcement Roadbed Enhancement Embankment Widening Dam Construction Slope Stabilization
Significant Cost Savings: Reduces overall project investment by 30%–50% in embankment widening and dam construction by decreasing lateral earth pressure and minimizing the need for imported fill materials.
Accelerated Construction: Shortens project schedules by over 50% compared to traditional concrete or soil replacement methods, as the lightweight HDPE rolls are easy to handle and install.
Minimal Creep Deformation: Engineered with high molecular orientation to ensure extremely low long-term creep under sustained loads, guaranteeing decades of reliable performance for roadbeds and slopes.
Enhanced Load Distribution: Utilizes an advanced interlocking mechanism with soil to rapidly disperse localized stresses across a wider area, effectively preventing roadbed deformation and cracking.
Extended Service Life: Manufactured with premium High-Density Polyethylene (HDPE) and UV-stabilized additives to withstand harsh environmental conditions, extending infrastructure lifespan to 15–30 years or more.
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- Product Description
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- Commodity name: Uniaxial HDPE Geogrid 35-300 kN/m (5,000-43,500 lb/ft) for Geotechnical Reinforcement Roadbed Enhancement Embankment Widening Dam Construction Slope Stabilization
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 critical geotechnical reinforcement projects.<br/> Significant Cost Savings: Reduces overall project investment by 30%–50% in embankment widening and dam construction by decreasing lateral earth pressure and minimizing the need for imported fill materials.<br/> Accelerated Construction: Shortens project schedules by over 50% compared to traditional concrete or soil replacement methods, as the lightweight HDPE rolls are easy to handle and install.<br/> Minimal Creep Deformation: Engineered with high molecular orientation to ensure extremely low long-term creep under sustained loads, guaranteeing decades of reliable performance for roadbeds and slopes.<br/> Enhanced Load Distribution: Utilizes an advanced interlocking mechanism with soil to rapidly disperse localized stresses across a wider area, effectively preventing roadbed deformation and cracking.<br/> Extended Service Life: Manufactured with premium High-Density Polyethylene (HDPE) and UV-stabilized additives to withstand harsh environmental conditions, extending infrastructure lifespan to 15–30 years or more.
Key Technical Advantages
⚙️ Unidirectional Polymer Orientation: Precision uniaxial stretching aligns the polymer chains into a linear state, creating robust elliptical ribs that deliver maximum tensile strength exactly where it is needed.
🔗 High-Efficiency Aggregate Locking: The optimized aperture design physically locks soil and aggregate particles in place, forming a composite mass that efficiently transfers and distributes lateral stresses.
️🛡️ Inert to Harsh Environments: Formulated with premium HDPE, this geogrid is completely immune to soil acids, alkalis, and biological decay, ensuring zero degradation in aggressive ground conditions.
📉 High-Stiffness Performance: Engineered for minimal elongation, the geogrid provides immediate structural support at low strain levels (2%–5%), preventing soil movement before it even begins.
🌍 UV & Oxidation Shielded: Infused with carbon black and advanced antioxidants, the material is heavily fortified against UV radiation and oxidative aging, guaranteeing long-term structural reliability.
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🏗️ Geotechnical Reinforcement
Challenge: Complex subsurface conditions and heavy structural loads often lead to localized soil failures, bearing capacity issues, and unpredictable ground movement.
Solution: High-tensile HDPE geogrids provide targeted reinforcement by creating a stiffened composite soil mass. This improves the overall bearing capacity and ensures long-term structural stability for foundational projects.
🛣️ Roadbed Enhancement
Challenge: Continuous traffic loads and environmental stress cause lateral spreading of the base aggregate, leading to rutting, differential settlement, and frequent, expensive maintenance.
Solution: Integrating uniaxial geogrids into the roadbed confines the aggregate and distributes wheel loads over a wider area. This reduces base thickness requirements, prevents rutting, and significantly extends the pavement's maintenance interval.
📏 Embankment Widening
Challenge: Adding new lanes to existing highways requires integrating new fill with old embankments, which frequently results in severe differential settlement and longitudinal cracking at the splice joint.
Solution: Uniaxial geogrids act as a tensile tie, mechanically connecting the new and existing soil masses. This creates a unified, monolithic block that eliminates differential settlement and prevents reflective cracking.
🌊 Dam Construction
Challenge: Building high dams 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 safe construction of higher embankments while reducing the required thickness of imported structural fill.
⛰️ Slope Stabilization
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 steeper slope angles, prevents deep-seated failures, and facilitates rapid vegetative face treatments for permanent erosion control.
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