EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
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  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control
  • EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control

EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control

Superior Weldability & Seam Integrity: Hot-wedge welding creates monolithic seams with 95%+ joint efficiency, reducing leak risks in subway tunnels and cutting inspection costs by 40%.
Exceptional Flexibility at Low Temperatures: Maintains >300% elongation at -40°C (-40°F), preventing brittle fractures in highway foundations and earth-rock dams during harsh winters.
Rapid Deployment Efficiency: Wide rolls (up to 7 m / 23 ft) minimize field seams by 60%, accelerating subway and tunnel lining schedules by up to 30% versus traditional waterproofing boards.
High Puncture & Shear Resistance: Reinforced structure withstands sharp aggregate and construction loads, reducing liner replacement frequency by 50% in railway foundation reinforcement.
Long-Term Chemical & Aging Stability: Resists alkaline concrete environments and UV exposure, guaranteeing 50+ years of service in planted roofs and underground utility tunnels.
Cost-Effective Seepage Control: Delivers ≤1.0×10⁻¹¹ cm/s permeability, saving up to 25% in total lifecycle costs compared to multi-layer asphalt or bentonite systems for dam seepage control.

隐藏域元素占位

  • Product Description
    • Commodity name: EVA/Bitumen Geomembrane for Municipal & Transportation: Subway Engineering Underground Utility Tunnels Planted Roofs Highway/Railway Foundation Reinforcement Earth-Rock Dam Seepage Control

    Superior Weldability & Seam Integrity: Hot-wedge welding creates monolithic seams with 95%+ joint efficiency, reducing leak risks in subway tunnels and cutting inspection costs by 40%.<br/> Exceptional Flexibility at Low Temperatures: Maintains >300% elongation at -40°C (-40°F), preventing brittle fractures in highway foundations and earth-rock dams during harsh winters.<br/> Rapid Deployment Efficiency: Wide rolls (up to 7 m / 23 ft) minimize field seams by 60%, accelerating subway and tunnel lining schedules by up to 30% versus traditional waterproofing boards.<br/> High Puncture & Shear Resistance: Reinforced structure withstands sharp aggregate and construction loads, reducing liner replacement frequency by 50% in railway foundation reinforcement.<br/> Long-Term Chemical & Aging Stability: Resists alkaline concrete environments and UV exposure, guaranteeing 50+ years of service in planted roofs and underground utility tunnels.<br/> Cost-Effective Seepage Control: Delivers ≤1.0×10⁻¹¹ cm/s permeability, saving up to 25% in total lifecycle costs compared to multi-layer asphalt or bentonite systems for dam seepage control.

    Key Technical Advantages

     

    🔥 Superior Hot-Wedge Weldability vs. PVC: Unlike PVC liners that require chemical solvents and often fail at seams, EVA/Bitumen geomembranes form homogeneous, heat-fused joints. This eliminates solvent-related VOC emissions, ensures 95%+ seam strength, and drastically reduces long-term leak repair costs in subway tunnels.
    🌡️ Cold-Flexibility Resilience vs. HDPE: While standard HDPE becomes brittle below -20°C (-4°F), EVA/Bitumen remains flexible down to -40°C (-40°F). This prevents catastrophic cracking in highway foundations and earth-rock dams during freeze-thaw cycles, eliminating the environmental damage and high costs of annual structural repairs.
    🌿 Reduced Carbon Footprint vs. Concrete Barriers: Traditional concrete waterproofing requires massive cement production and heavy machinery. EVA/Bitumen geomembranes are lightweight, require minimal subgrade preparation, and reduce CO₂ emissions by up to 60% during installation, while preventing soil contamination from cement runoff.
    💧 Root & Algae Resistance vs. Asphalt Coatings: Asphalt coatings degrade under UV exposure and are vulnerable to root penetration in planted roofs. EVA/Bitumen’s inert surface resists biological growth and root intrusion, preventing the need for toxic herbicides and eliminating the environmental hazard of asphalt leaching into soil.
    💪 Shear Strength for Infrastructure vs. Clay Liners: Natural clay liners suffer from desiccation cracking and poor shear strength under dynamic loads. EVA/Bitumen geomembranes provide consistent shear resistance (>30 kN/m) for railway foundations, preventing track settlement and avoiding the massive ecological disruption of frequent rail bed reconstruction.
    ♻️ Recyclable & Safe Formulation vs. Coal Tar Pitch: Historic coal tar pitch barriers leach carcinogenic PAHs into groundwater. Modern EVA/Bitumen geomembranes are PAH-free and recyclable, ensuring zero toxic leaching in underground utility tunnels and protecting municipal water supplies from industrial contamination.


    Basic Info.

     

    Material

    HDPE, EPDM, LDPE, LLDPE, EVA, PVC

    Feature

    Waterproof, Anti-UV, Recyclable, Durable, Eco Friendly, Anti-Corrosion, Disposable

    Surface

    Smooth, Single textured, Double textured

    After-sale Service

    Online Technical Support, Onsite Installation, Onsite Training

    Length

    50m-420m (164–1,378 ft) or Customized

    Project Solution Capability

    Graphic design, 3D model design, Total solution for projects

    Width

    1m~8m (3.28–26.25 ft) or Customized

    Thickness

    0.1mm-3mm (4–118 mil)

    MOQ

    3000 Sqm (32,292 ft²)

    Standard

    GB/ASTM GRI-GM13

    ColorBlack/ White/ Green/ Blue or CustomizedCertificationISO9001/ISO14001/BV/SONCAP
    TrademarkZhonglooOriginChina
    Application1Pond, Reservoir, DAM, Fish farm, Aquaculture, Fish pond, Landfill, Shrimp farmApplication2Landfill Liner Banks, Tunnels, Swimming pools, Sewage treatment, Tailings pond, Subway


    Technical Specifications

     

    PropertyTest MethodUnit (Metric / Imperial)GMS0.5 (20mil)GMS0.75 (30mil)GMS1.0 (40mil)GMS1.25 (50mil)GMS1.5 (60mil)GMS2.0 (80mil)GMS2.5 (100mil)
    Nominal ThicknessASTM D5199mm (mil)0.50 (20)0.75 (30)1.00 (40)1.25 (50)1.50 (60)2.00 (80)2.50 (100)
    DensityASTM D1505 / D792g/cm³≥0.940≥0.940≥0.940≥0.940≥0.940≥0.940≥0.940
    Yield StrengthASTM D6693kN/m (lb/in)7 (40)11 (63)15 (84)18 (105)22 (126)29 (168)37 (210)
    Break StrengthASTM D6693kN/m (lb/in)10 (57)20 (114)27 (152)33 (190)40 (228)53 (304)67 (380)
    Yield ElongationASTM D6693%≥12≥12≥12≥12≥12≥12≥12
    Break ElongationASTM D6693%≥700≥700≥700≥700≥700≥700≥700
    Tear ResistanceASTM D1004N (lb)70 (16)93 (21)125 (28)156 (35)187 (42)249 (56)311 (70)
    Puncture ResistanceASTM D4833N (lb)180 (40)240 (54)320 (72)400 (90)480 (108)640 (144)800 (180)
    Stress Crack ResistanceASTM D5397hr≥500≥500≥500≥500≥500≥500≥500
    Carbon Black ContentASTM D4218%2.0–3.02.0–3.02.0–3.02.0–3.02.0–3.02.0–3.02.0–3.0
    Carbon Black DispersionASTM D5596CategoryCategory 1 or 2Category 1 or 2Category 1 or 2Category 1 or 2Category 1 or 2Category 1 or 2Category 1 or 2
    Standard OITASTM D3895min≥100≥100≥100≥100≥100≥100≥100
    High Pressure OITASTM D5885min≥400≥400≥400≥400≥400≥400≥400
    Oven Aging (85°C, 90d)ASTM D5721% OIT Retained≥55≥55≥55≥55≥55≥55≥55
    UV ResistanceASTM D7238% HP-OIT Retained≥50≥50≥50≥50≥50≥50≥50


    Application Solutions

     

    🚇 Subway Engineering & Underground Utility Tunnels
    Challenge: Complex tunnel geometries, high groundwater pressure, and alkaline concrete environments cause traditional sheet membranes to delaminate, leading to persistent leaks and costly service disruptions.
    Solution: Install EVA/Bitumen geomembranes (1.5–2.0 mm / 60–80 mils) with full hot-wedge welded seams. The material’s superior weldability and alkali resistance create a monolithic, leak-proof barrier that withstands hydrostatic pressure and concrete corrosion, reducing maintenance interventions by 70%.
    🛣️ Highway & Railway Foundation Reinforcement
    Challenge: Dynamic traffic loads and frost heave cause rigid waterproofing layers to crack, allowing water infiltration that weakens subgrades and leads to potholes, track buckling, and expensive annual repairs.
    Solution: Deploy high-shear EVA/Bitumen membranes (2.0–3.0 mm / 80–120 mils) as the separation and waterproofing layer. Its cold-flexibility (-40°C / -40°F) and puncture resistance accommodate ground movement without tearing, extending pavement lifespan by 15+ years and cutting lifecycle costs by 35%.
    🌿 Planted Roofs & Green Infrastructure
    Challenge: Aggressive root systems and constant moisture exposure degrade standard plastic liners, causing leaks into building structures and requiring toxic root barriers or frequent replacements.
    Solution: Use root-resistant EVA/Bitumen geomembranes (2.0 mm / 80 mils) with integrated root-blocking additives. The material’s flexibility conforms to roof contours, while its chemical inertness prevents degradation from soil microbes, ensuring 50+ years of leak-free performance without environmental toxins.
    🏔️ Earth-Rock Dam Seepage Control
    Challenge: Large-scale dams face differential settlement and high hydraulic gradients that cause clay cores to crack and asphalt facings to oxidize, leading to dangerous seepage and potential structural failure.
    Solution: Implement reinforced EVA/Bitumen geomembranes (2.5–4.0 mm / 100–160 mils) as the central core or upstream face. Its high elongation (>400%) accommodates settlement, while the bitumen component provides self-healing properties for minor punctures, ensuring dam safety and reducing emergency repair risks by 90%.

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