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Borealis Low Sulfur™ LE0594 Crosslinkable Semiconductive Compound for Shielding of Power Cables

Category Polymer , Thermoplastic , Ethylene Vinyl Acetate
Manufacturer Borealis
Trade Name Low Sulfur™
Port Ningbo port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Borealis Low Sulfur™ LE0594 Crosslinkable Semiconductive Compound for Shielding of Power Cables.pdf
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Material Notes:
Low Sulphur LE0594 is designed for use as a conductor and bonded insulation shield for medium and high voltage cables. LE0594 is a peroxide crosslinkable compound and is specifically intended to meet cable specifications based on crosslinked polyethylene insulations. It lends itself readily to various manufacturing processes including triple extrusion.Low Sulphur LE0594 is based on an ethylene vinyl acetate copolymer (EVA) and is designed to meet the stringent shrinkback requirements for cables with aluminum conductors. It should not be used on copper conductors.Information provided by the Manufacturer.
Physical Properties Metric English Comments
Density 1.13 g/cc
0.0408 lb/in³
ASTM D1928/D 1505
Mechanical Properties Metric English Comments
Tensile Strength, Yield >= 7.24 MPa
>= 1050 psi
Heat Aging (168 hrs at 150°C); ASTM D638
14.5 MPa
2100 psi
ASTM D638
Elongation at Break 200 %
200 %
ASTM D638
Tensile Set >= 100 %
>= 100 %
Retention; ASTM D638
Electrical Properties Metric English Comments
Electrical Resistivity 25.0 ohm-cm
25.0 ohm-cm
ASTM D991
40.0 ohm-cm

@Temperature 40.0 °C
40.0 ohm-cm

@Temperature 104 °F
ASTM D991
80.0 ohm-cm

@Temperature 60.0 °C
80.0 ohm-cm

@Temperature 140 °F
ASTM D991
325 ohm-cm

@Temperature 80.0 °C
325 ohm-cm

@Temperature 176 °F
ASTM D991
400 ohm-cm

@Temperature 130 °C
400 ohm-cm

@Temperature 266 °F
ASTM D991
525 ohm-cm

@Temperature 100 °C
525 ohm-cm

@Temperature 212 °F
ASTM D991
Processing Properties Metric English Comments
Middle Barrel Temperature >= 110 °C
>= 230 °F
Front Barrel Temperature >= 100 °C
>= 212 °F
Die Temperature >= 120 °C
>= 248 °F
Head Temperature >= 120 °C
>= 248 °F
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