Biaxial HDPE Geogrid 20-80 kN/m (2,900-11,600 lb/ft) for Subgrade Stabilization Base Course Reinforcement Slope Protection Dam Reinforcement Shoreline Erosion Control
Significant Material Savings: Reduces the required aggregate base thickness by up to 30%, drastically lowering material and transportation costs for subgrade stabilization projects.
Accelerated Construction: Cuts project timelines by up to 50% compared to traditional soil replacement methods, as the lightweight HDPE rolls are easy to handle and install.
Extended Infrastructure Lifespan: Increases pavement fatigue life by 8-12 years by mitigating differential settlement and preventing reflective cracking in high-traffic zones.
Superior Aggregate Interlock: Features precisely engineered apertures that create a highly efficient mechanical lock with surrounding soils, enhancing overall structural stability.
Exceptional Chemical & Environmental Resistance: Manufactured from high-quality High-Density Polyethylene (HDPE) with UV stabilizers, ensuring resistance to soil acids, alkalis, and long-term environmental degradation.
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- Product Description
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- Commodity name: Biaxial HDPE Geogrid 20-80 kN/m (2,900-11,600 lb/ft) for Subgrade Stabilization Base Course Reinforcement Slope Protection Dam Reinforcement Shoreline Erosion Control
Optimal Load Distribution: Provides balanced biaxial tensile strength of 20-80 kN/m (2,900-11,600 lb/ft) to effectively distribute heavy traffic loads and prevent rutting in base courses.<br/> Significant Material Savings: Reduces the required aggregate base thickness by up to 30%, drastically lowering material and transportation costs for subgrade stabilization projects.<br/> Accelerated Construction: Cuts project timelines by up to 50% compared to traditional soil replacement methods, as the lightweight HDPE rolls are easy to handle and install.<br/> Extended Infrastructure Lifespan: Increases pavement fatigue life by 8-12 years by mitigating differential settlement and preventing reflective cracking in high-traffic zones.<br/> Superior Aggregate Interlock: Features precisely engineered apertures that create a highly efficient mechanical lock with surrounding soils, enhancing overall structural stability.<br/> Exceptional Chemical & Environmental Resistance: Manufactured from high-quality High-Density Polyethylene (HDPE) with UV stabilizers, ensuring resistance to soil acids, alkalis, and long-term environmental degradation.
Key Technical Advantages
⚙️ True Biaxial Molecular Orientation: Manufactured through a precise extrusion, punching, and biaxial stretching process, ensuring equal and high tensile strength in both the longitudinal and transverse directions.
🔗 Advanced Mechanical Interlocking System: The rigid, rectangular rib structure and uniform apertures confine aggregate particles, creating a stiffened composite layer that acts as a semi-rigid slab to distribute vertical stresses.
🛡️ Low Creep & High Modulus: Engineered with a high modulus and low elongation rate (typically ≤13% longitudinal / ≤16% transverse at yield), ensuring the geogrid maintains its structural integrity under continuous heavy loads without excessive deformation.
📉 Optimized Aperture Geometry: The specifically designed square openings maximize the passive resistance and friction coefficient between the geogrid and the soil/aggregate fill, enhancing shear strength.
🌍 Robust Durability Formulation: Premium HDPE material is treated with carbon black and anti-aging additives, providing superior resistance to ultraviolet radiation, extreme temperatures, and harsh chemical environments.
Basic Info.
Technical Specifications
Application Solutions🛣️ Subgrade Stabilization
Challenge: Building on weak, compressible soils often results in severe uneven settlement, bearing capacity failure, and costly, time-consuming soil replacement or pre-loading processes.
Solution: The geogrid provides immediate basal reinforcement, bridging over soft spots and distributing structural loads across a larger footprint. This stabilizes the subgrade, accelerates consolidation, and allows for safe construction without extensive soil excavation.
🏗️ Base Course Reinforcement
Challenge: Heavy dynamic loads from vehicles cause lateral spreading of the base aggregate, leading to rutting, potholes, and frequent, expensive maintenance.
Solution: Biaxial HDPE geogrids act as a tensioned membrane within the base course, confining the aggregate and distributing wheel loads over a wider area. This reduces base thickness requirements and extends the maintenance interval of the pavement.
⛰️ Slope Protection
Challenge: Constructing steep slopes in weak soils often leads to severe surface erosion, shallow sloughing, and catastrophic slope failures during heavy rainfall.
Solution: Reinforcing the soil with high-strength biaxial geogrids increases the shear strength of the soil mass. This prevents deep-seated failures and facilitates rapid vegetative face treatments for permanent erosion control.
🌊 Dam Reinforcement
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 construction of higher embankments safely while reducing the required thickness of imported structural fill.
🏖️ Shoreline Erosion Control
Challenge: Coastal structures face relentless wave action, tidal forces, and saltwater corrosion, which can rapidly erode foundations and compromise structural integrity.
Solution: High-tensile HDPE geogrids are installed in horizontal layers to mechanically pin the revetment armor to the underlying soil mass. The lightweight nature of the geogrid prevents overloading the failing slope, while its exceptional chemical resistance ensures long-term durability in harsh marine environments.
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