Novodur® E401

About
Novodur® E401 is a high impact extrusion grade with good surface appearance FEATURES High impact strength High melt strength High surface quality APPLICATIONS Extruded sheets Thermoformed parts Substate material for co-extrusion Refrigerator inliner&&

Product Description
SupplierINEOS
GenericABS
Material StatusCommercial: Active
FeaturesGood surface appearance,High impact resistance,Good melt strength
AvailabilitysAfrica & Middle East ,Europe
Process MethodsExtrusion

Technical Data
PHYSICALNominal valueUnitTest method
Density1.02g/cm³ISO 1183
Melt Volume Rate
220℃,10 kg5.00cm³/10minISO 1133
Shrinkage rate0.50 to 0.80%ISO 294-4

IMPACTNominal valueUnitTest method
Charpy Notched Impact Strength ISO 179
-30℃16kJ/m²ISO 179
23℃30kJ/m²ISO 179
Charpy Unnotch Impact strength ISO 179
-30℃170kJ/m²ISO 179
23℃210kJ/m²ISO 179
Impact strength of cantilever beam notch ISO 180/A
-30℃19kJ/m²ISO 180-A
23℃30kJ/m²ISO 180-A

THERMALNominal valueUnitTest method
Hot deformation temperature 
0.45 MPa, annealed100ISO 75-2/B
1.8 MPa, annealed94.0ISO 75-2/A
Vicat Softening Temp
B5099.0ISO 306
Linear coefficient of thermal expansion
MD9.0E-51/℃ISO 11359-2

Electrical performanceNominal valueUnitTest method
Surface resistivity> 1.0E+15ohmsIEC 60093
Volume resistivity> 1.0E+15ohms·cmIEC 60093
Dielectric strength
1.5 mm35kV/mmIEC 60243-1
Relative permittivity IEC 60250
100 Hz3.10 IEC 60250
1 MHz2.90 IEC 60250
Dissipation factor IEC 60250
100 Hz5.0E-3 IEC 60250
1 MHz9.0E-3 IEC 60250
Compared to the leakage tracing index600VIEC 60112

MECHANICALNominal valueUnitTest method
Ball hardness85.0MPaISO 2039-1
Tensile modulus1900MPaISO 527-2
tensile strength
Yield, 23 ℃40.0MPaISO 527-2
Tensile strain ISO 527-2
Yield, 23 ℃2.5%ISO 527-2
Fracture, 23 ℃> 15%ISO 527-2
Bending modulus1900MPaISO 178
bending strength60.0MPaISO 178

Process Conditions
ExtrusionNominal valueUnitTest method
Drying temperature80°C
Drying time2.0 to 4.0hr
Melt temperature210 to 240°C

Notes
1. Typical properties: these are not to be construed as specifications.
2. 4h/80°C
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