CONTINUUM™ DGDA-2420 YL

Category: MDPE , Bimodal Polyethylene Resin
Manufacturer: The Dow Chemical Company
Trademark: CONTINUUM™
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: HTQhg3_CONTINUUM-DGDA-2420-YL.pdf
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Message
CONTINUUM™ DGDA-2420 YL Bimodal Polyethylene Resin is produced using UNIPOL™ II process technology. This product is formulated with UV stabilizers for outdoor storage. This product may be utilized for pipe applications where long-term hydrostatic strength combined with outstanding resistance to slow crack growth and rapid crack propagation is desired. Suitable applications include natural gas distribution pipes.

Industrial Standards Compliance:
  • ASTM D 3350: cell classification PE234373E(a)
  • Plastics Pipe Institute (PPI):
    • ISO PE 80 pipe grade
    • ASTM PE 2708 pipe grade - 1250 psi HDB @ 73°F, 800 psi HDS at 73°F, and 1000 psi HDB at 140°F
General Information
Additive
  • Processing Aid
Agency Ratings
  • ASTM D 3350 PE234373E
  • ASTM PE2708
  • ISO PE 100
Forms
  • Pellets
Processing Method
  • Profile Extrusion
PhysicalNominal ValueUnitTest Method
Density ASTM D1505
    Base Resin 10.940g/cm³
    Yellow 20.944g/cm³
Melt Mass-Flow Rate (MFR) ASTM D1238
    190°C/2.16 kg > 0.28g/10 min
    190°C/21.6 kg 9.5g/10 min
MechanicalNominal ValueUnitTest Method
Tensile Strength 3(Yield)> 17.9MPaASTM D638
Tensile Elongation 4(Break)> 600%ASTM D638
Flexural Modulus - 2% Secant > 621MPaASTM D790B
Resistance to Rapid Crack Propagation, Pc
    Calculated, Full Scale : 0°C 5> 38.6barISO 13478
    S-4 : 0°C 6> 10.0barISO 13477
Resistance to Rapid Crack Propagation, Tc - S-4 @ 5 bar 7< -2°CISO 13477
Slow Crack Growth Resistance 8
    Notched Pipe Test : 80°C > 3000hrISO 13479
    PENT > 15000hrASTM F1473
ThermalNominal ValueUnitTest Method
Thermal Stability > 220°CASTM D3350
Brittleness Temperature 9< -75.0°CASTM D746A
Note Message
1 .Compression molded parts prepared according to ASTM D 1928 Procedure C. Properties will vary with changes in molding conditions and aging time.
2 .Method I (3 point load)
3 .Compression molded parts prepared according to ASTM D 1928 Procedure C. Properties will vary with changes in molding conditions and aging time.Calculated value, determined by the equation in ISO 4437 based on S-4 test data. Pipe diameter of 12 inch IPS (30.5 mcm) and Standard Dimension Ratio (SDR) 11.5.
4 .Compression molded parts prepared according to ASTM D 1928 Procedure C. Properties will vary with changes in molding conditions and aging time.Calculated value, determined by the equation in ISO 4437 based on S-4 test data. Pipe diameter of 12 inch IPS (30.5 mcm) and Standard Dimension Ratio (SDR) 11.5.
5 .Calculated value, determined by the equation in ISO 4437 based on S-4 test data. Pipe diameter of 12 inch IPS (30.5 mcm) and Standard Dimension Ratio (SDR) 11.5.
6 .Pipe diameter of 12 inch IPS (30.5 cm) and Standard Dimension Ratio (SDR) 11.5.
7 .Pipe diameter of 12 inch IPS (30.5 cm) and Standard Dimension Ratio (SDR) 11.5.
8 .Compression molded parts prepared according to ASTM D 1928 Procedure C. Properties will vary with changes in molding conditions and aging time.
9 .Compression molded parts prepared according to ASTM D 1928 Procedure C. Properties will vary with changes in molding conditions and aging time.
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