Horda E8572

Category: PE, Unspecified , Polyethylene
Manufacturer: Horda Cable Compounds
Trademark: Horda
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: 3ggDbf_Horda-E8572.pdf
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E8572 is a crosslinkable, strippable semiconductive compound, designed for XLPEinsulated cables and use in both dry and steam curing processes.

E8572 meets the requirements as below, when optimal processing extrusion and end testing procedure are used:
  • AEIC- CS 8 (latest edition)
  • BS 6622
  • IECA: 60502
  • NF C 33-223
  • NEMA WC 7-1996/ICEA S-95-658
General Information
Features
  • Semi-conductive
  • Crosslinkable
Uses
  • Wire and cable applications
Agency Ratings
  • AEIC CS8
  • BS 6622
  • ICEA S-95-658
  • IEC 60502
  • NEMA WC-7
  • NF C 33-223
Forms
  • Particle
PhysicalNominal ValueUnitTest Method
Density 1.23g/cm³ASTM D1928
Mooney Viscosity (ML 1+4, 121°C)21MUISO 289
Moisture 1ppm
ThermalNominal ValueUnitTest Method
Thermosetting (200°C) 260/20%IEC 540
Additional InformationNominal ValueUnit
Stripping Angle 180°
Stripping Force 3
    EPR : 23°C 2.6 - 3.0kN/m
    XLPE : 23°C 1.5 - 1.8kN/m
HardnessNominal ValueUnitTest Method
Durometer Hardness (Shore A)85 - 90ASTM D2240
MechanicalNominal ValueUnitTest Method
Tensile Strength 12.0MPaASTM D638
Tensile Elongation (Break)250%ASTM D638
AgingNominal ValueUnitTest Method
Change in Tensile Strength in Air (135°C, 168 hr)-10%ASTM D573
Change in Ultimate Elongation in Air (135°C, 168 hr)-40%ASTM D573
ElectricalNominal ValueUnitTest Method
Volume Resistivity ASTM D257
    23°C < 5.0E+2ohms·cmASTM D257
    90°C < 1.0E+3ohms·cmASTM D257
    120°C < 1.0E+3ohms·cmASTM D257
ExtrusionNominal ValueUnit
Drying Temperature < 40.0°C
Hopper Temperature 23.0°C
Cylinder Zone 1 Temp. 60.0 - 110°C
Cylinder Zone 2 Temp. 60.0 - 110°C
Cylinder Zone 3 Temp. 60.0 - 110°C
Cylinder Zone 4 Temp. 60.0 - 110°C
Cylinder Zone 5 Temp. 60.0 - 110°C
Die Temperature 100 - 130°C
Extrusion instructions
Neck Temperature: 100 to 130°CHead Temperature: 100 to 130°C
Note Message
1 .QAHC-10420 (Karl Fischer method)
2 .20 N/cm²
3 .50 mm/min
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