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CONTINUUM™ DGDA-2490 BK

Bimodal Polyethylene Resin

Supplied by The Dow Chemical Company

The technical datasheet with complete property values for CONTINUUM™ DGDA-2490 BK is available to members of the Prospector Plastics Database.
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Product Description
CONTINUUM™ DGDA-2490 BK Bimodal Polyethylene Resin is produced using UNIPOL™ II process technology. 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 piping, mining, sewage, and municipal water service lines.

Industrial Standards Compliance:
  • ASTM D 3350: cell classification
    • Black - PE445576C (MRS)(See NOTES 1)
    • Black - PE445574C (HDB) (See NOTES 1)
  • Plastics Pipe Institute (PPI): TR-4
    • Black Pipe - CONTINUUM™ DGDA-2490 BK (See NOTES 1)
    • ISO PE100 pipe grade - CRS 10 @ 20°C; MRS 10 @ 20°C, 100 yr; CRS 8 @ 40°C, 90 yr; CRS 6.3 @ 60°C, 11 yr; CRS 11.2 @ 14°C, 50 yr
    • ASTM PE4710 pipe grade - 1600psi HDB and 1000psi HDS @ 73°F, and 1000psi HDB @ 140°F
  • NSF International: Standard 14 and 61
    • Black Pipe - DGDA-2490 Black 100 (See NOTES 1)
Consult the regulations for complete details.

NOTES:
(1) Natural resin extruded under proper conditions with carbon black masterbatch DFNF-0092 (6.5%).
General  
Material Status 
  • Commercial: Active
Availability 
  • Asia Pacific
  • Latin America
  • North America
Additive 
  • Processing Aid
Agency Ratings 
Forms 
  • Pellets
Processing Method 
  • Profile Extrusion
Physical
Nominal Value
Unit
Test Method
Specific Gravity
    ASTM D792
Natural
 
 
Black 2
 
 
Melt Mass-Flow Rate (MFR)
    ASTM D1238
190°C/2.16 kg
g/10 min
 
190°C/21.6 kg
g/10 min
 
Mechanical
Nominal Value
Unit
Test Method
Tensile Strength 3 (Yield)
psi
ASTM D638
Tensile Elongation 3 (Break)
%
ASTM D638
Flexural Modulus 4, 3
psi
ASTM D790B
Creep Rupture Strength - 1798 psi (12.4 MPa) (68°F)
day
ISO 1167
Hydrostatic Strength 2
    ISO 4427
1798 psi (12.4 MPa): 68°F
day
 
725 psi (5.0 MPa): 176°F
day
 
Resistance to Rapid Crack Propagation, Pc
     
Full Scale: 32°F 5
psi
ISO 13478
S-4: 32°F 6
psi
ISO 13477
Resistance to Rapid Crack Propagation, Tc - S-4 6 (32°F)
°F
ISO 13477
Slow Crack Growth PENT 3
yr
ASTM F1473
Stress Crack Resistance - Pipe notch 7 (176°F)
month
ISO 13479
Impact
Nominal Value
Unit
Test Method
Notched Izod Impact 3 (73°F)
ft·lb/in
ASTM D256A
Thermal
Nominal Value
Unit
Test Method
Brittleness Temperature 3
°F
ASTM D746A
Thermal Stability
°F
ASTM D3350
Related Terminology
Product names can be difficult to match. You may have searched any one of these terms to find this product: CONTINUUM™ DGDA-2490 BK, CONTINUUM DGDA2490 BK, CONTINUUM™ , CONTINUUM, CONTINUUMDGDA2490BK, DGDA, DGDA-2490 BK, DGDA2490 BK, DGDA:2490 BK, DGDA/2490 BK, DGDA+2490 BK, DGDA_2490 BK, DGDA 2490 BK, DGDA2490, 2490BK, DGDA2490BK, DGDA_2490BK, Polyethylene, High Density, Polyethylene High Density, HDPE, Polyethylene, PE, Dow, PolyethyleneHighDensity, 2490DGDA
Agency Ratings
This plastic material has 7 certifications from the following agencies (the number in parentheses shows the number of certifications for that agency): ASTM (3), ISO (1), NSF (2), PPI (1).
Notes
1Typical properties: these are not to be construed as specifications.
2Natural resin extruded under proper conditions with carbon black masterbatch DFNF-0092 (6.5%).
3Compression molded parts prepared according to ASTM D 4703 Procedure C unless otherwise noted in the test method. Properties will vary with changes in molding conditions and aging time.
4Method I (3 point load)
5Calculated value, determined by the equation in ISO 4437 based on S-4 test data. Pipe diameter of 10 inch IPS (25.4 cm) and Standard Diameter Ratio (SDR) 11
6Pipe diameter of 10 inch IPS (25.4 cm) and Standard Diameter Ratio (SDR) 11.
7133 psi (0.92 MPa)
 
IDES
Copyright © 2012 IDES
The information presented on this datasheet was acquired by IDES from the producer of the material. IDES makes substantial efforts to assure the accuracy of this data. However, IDES assumes no responsibility for the data values and strongly encourages that upon final material selection, data points are validated with the material supplier.