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This is the free Material Data Center Datasheet of ULTEM™ Resin 2120 - PEI-GF10 - Saudi Basic Industries Corporation (SABIC)

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Product Texts
ULTEM 2120 resin is a high flow 10% glass fiber reinforced polyetherimide resin. The material is RoHS compliant and is intrinsically flame retardant without the use of FR modifiers and offers UL94 V0 at ≥ 0.5 mm. The material may offer excellent dimension stability, strength, stiffness and creep resistance up to high temperature due to its high glass transition temperature of 217 °C. The material is opaque and can be custom colored.
ISCC+ certified renewable bio-based solutions are available for this grade via differentiated color nomenclature.

UL Yellow Card Link: 104556711-E121562
Processing/Physical CharacteristicsValueUnitTest Standard
ISO Data
Melt volume-flow rate, MVR 12 cm³/10min ISO 1133
Temperature 337 °C -
Load 6.7 kg -
ASTM Data
Melt Flow Index, MFI 20 g/10min ASTM D 1238
Temperature 337 °C -
Load 6.7 kg -
Mold Shrinkage, MD 0.004 mm/mm ASTM D 955
Mold Shrinkage, TD 0.004 mm/mm ASTM D 955
Mechanical propertiesValueUnitTest Standard
ISO Data
Tensile Modulus 4960 MPa ISO 527
Stress at break 124 MPa ISO 527
Strain at break 4.2 % ISO 527
Flexural modulus, 23°C 4920 MPa ISO 178
Charpy impact strength, +23°C 31.7 kJ/m² ISO 179/1eU
Charpy impact strength, -30°C 33.2 kJ/m² ISO 179/1eU
Charpy notched impact strength, -30°C 2.7 kJ/m² ISO 179/1eA
Charpy notched impact strength, +23°C, 3mm 2.6 kJ/m² ISO 179/1eA
Izod impact strength, +23°C 28 kJ/m² ISO 180/1U
Izod notched impact strength, +23°C 4 kJ/m² ISO 180/1A
Izod notched impact strength 3.8 kJ/m² ISO 180/1A
Temperature -30 °C -
ASTM Data
Tensile Modulus 5100 MPa ASTM D 638
Tensile Strength at Break 120 MPa ASTM D 638
Elongation at Break 3 % ASTM D 638
Flexural Modulus 5100 MPa ASTM D 790
Izod Impact notched, 1/8 in 50 J/m ASTM D 256
Izod Impact notched, Low-Temperature 45 J/m ASTM D 256
Temperature -30 °C -
Izod Impact unnotched, 1/8 in 510 J/m ASTM D 256
Thermal propertiesValueUnitTest Standard
ISO Data
Temp. of deflection under load, 1.80 MPa 205 °C ISO 75-1/-2
Temp. of deflection under load, 0.45 MPa 214 °C ISO 75-1/-2
Vicat softening temperature, B 218 °C ISO 306
Burning behav. at thickness h V-0 class IEC 60695-11-10
Thickness tested 0.5 mm -
Yellow Card available yes - -
Glow Wire Flammability Index (GWFI) 960 °C IEC 60695-2-12
GWFI - thickness tested (1) 0.5 mm -
Glow Wire Flammability Index (GWFI) 960 °C IEC 60695-2-12
GWFI - thickness tested (2) 1.5 mm -
Glow Wire Flammability Index (GWFI) 960 °C IEC 60695-2-12
GWFI - thickness tested (3) 3 mm -
Glow Wire Ignition Temperature (GWIT) 825 °C IEC 60695-2-13
GWIT - thickness tested (1) 0.5 mm -
Glow Wire Ignition Temperature (GWIT) 825 °C IEC 60695-2-13
GWIT - thickness tested (2) 1.5 mm -
Glow Wire Ignition Temperature (GWIT) 825 °C IEC 60695-2-13
GWIT - thickness tested (3) 3 mm -
ASTM Data
UL 94 Flame rating V-0 - UL 94
Thickness tested 0.5 mm -
Coefficient of Thermal Expansion, MD 31.5 E-6/K ASTM D 696
Coefficient of Thermal Expansion, TD 59.2 E-6/K ASTM D 696
Vicat Temperature 215 °C ASTM D 1525
Electrical propertiesValueUnitTest Standard
ISO Data
Comparative tracking index 137 - IEC 60112
ASTM Data
Dielectric Strength, Short Time 27 kV/mm ASTM D 149
Volume Resistivity 1E13 Ohm*cm ASTM D 257
Other propertiesValueUnitTest Standard
Density 1240 kg/m³ ISO 1183
Density 1340 kg/m³ ASTM D 792
Processing Recommendation Injection MoldingValueUnitTest Standard
Pre-drying - Temperature 150 °C -
Pre-drying - Time 4 - 6 h -
Processing humidity ≤0.02 % -
Melt temperature 350 - 400 °C -
Mold temperature 135 - 165 °C -
Zone 1 330 - 400 °C -
Zone 2 340 - 400 °C -
Zone 3 345 - 400 °C -
Nozzle temperature 345 - 400 °C -
Screw speed 40 - 70 rpm -
Back pressure 0.3 - 0.7 MPa -
Characteristics
Processing
Injection Molding
Special Characteristics
Flame retardant, Opaque
Features
Creep Resistance
Certifications
RoHS compliant, ISCC Plus
Applications
Automotive, Electrical and Electronical
Regional Availability
North America, Europe, Asia Pacific, South and Central America
Disclaimer
Copyright Altair Engineering GmbH. Altair Engineering GmbH assumes no liability for the system to be free of errors. The user takes sole responsibility for the use of this data under the exclusion of every liability from Altair Engineering GmbH; this is especially valid for claims of compensation resulting from consequential damages. Altair explicitly points out that any decision about the application of materials must be double checked with the producer of this material. This includes all contents of this system. Copyright laws are applicable for the content of this system.
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