VESTORAN® X7342

Category: PPE , Polyphenylene Ether
Manufacturer: Evonik Industries AG
Trademark: VESTORAN®
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: uH7ivi_VESTORAN-X7342.pdf
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Modified polyphenylene ether (PPE), high heat resistant, 20 % glass-fiber reinforced

VESTORAN X7342 is the registered trademark of the Evonik Degussa GmbH for molding compounds containing poly-2,6-dimethyl-1,4-phenylene ether as polymeric constituent (poly-phenylene ether, PPE, also referred to as PPO).

As a material of amorphous structure, VESTORAN X7342 shows very small mold shrinkage. Therefore molded parts have a very low tendency to warp.

Moldings of VESTORAN X7342 are dimensionally stable and hydrolysis resistant even in hot water, but are more sensitive to organic solvents than semi-crystalline plastics. VESTORAN X7342 is resistant to aqueous alkalines and acides, certain alcohols, and glycol solutions.

Due to the glass-fiber reinforcement the compound combines outstanding heat deflection temperature under load with high strength and rigidity. The even smaller shrinkage compared to non-reinforced VESTORAN depends on the orientation of the glass fibers in the molded part.
General Information
Filler / Reinforcement
  • Glass fiber reinforced material, 20% filler by weight
Features
  • Good dimensional stability
  • Low warpage
  • Rigidity, high
  • High strength
  • alkali resistance
  • Alcohol resistance
  • Heat resistance, high
  • Hydrolysis resistance
  • Low shrinkage
  • amorphous
Forms
  • Particles
Processing Method
  • Injection molding
PhysicalNominal ValueUnitTest Method
Density 1.19g/cm³ISO 1183
Melt Volume-Flow Rate (MVR) (300°C/21.6 kg)40.0cm³/10minISO 1133
Molding Shrinkage ISO 294-4
    80°C, 2.00 mm 10.23%ISO 294-4
    Vertical flow direction : 80°C, 2.00mm 20.43%ISO 294-4
    Vertical flow direction : 150°C, 2.00mm 30.060%ISO 294-4
    Flow direction : 150°C, 2.00mm 40.050%ISO 294-4
MechanicalNominal ValueUnitTest Method
Tensile Modulus 5900MPaISO 527-2
Tensile Stress (Break)100MPaISO 527-2
Tensile Strain (Break)2.5%ISO 527-2
ImpactNominal ValueUnitTest Method
Charpy Notched Impact Strength (23°C, Complete Break)14kJ/m²ISO 179/1eA
Charpy Unnotched Impact Strength (23°C, Complete Break)45kJ/m²ISO 179/1eU
ThermalNominal ValueUnitTest Method
Heat Deflection Temperature
    0.45 MPa, not annealed 170°CISO 75-2/B
    1.8 MPa, not annealed 165°CISO 75-2/A
Vicat Softening Temperature
    -- 170°CISO 306
    -- 180°CISO 306/A
ElectricalNominal ValueUnitTest Method
Surface Resistivity IEC 60093
    -- 51.0E+14ohmsIEC 60093
    -- 1.0E+15ohmsIEC 60093
Volume Resistivity 1.0E+13ohms·cmIEC 60093
Dielectric Strength 629kV/mmIEC 60243-1
Dissipation Factor IEC 60250
    100 Hz 8.0E-3IEC 60250
    1 MHz 1.0E-3IEC 60250
Comparative Tracking Index IEC 60112
    Solution a 7150VIEC 60112
    Solution a 175VIEC 60112
InjectionNominal ValueUnit
Drying Temperature 80.0 - 110°C
Drying Time 2.0hr
Rear Temperature 280°C
Middle Temperature 300°C
Front Temperature 320°C
Nozzle Temperature 310°C
Processing (Melt) Temp 300 - 330°C
Mold Temperature 80.0 - 90.0°C
Injection Pressure 80.0 - 160MPa
Back Pressure 0.500 - 1.00MPa
Screw L/D Ratio 20.0:1.0
Screw Compression Ratio 2.0 : 1.0 - 3.0 : 1.0
Vent Depth 0.050mm
Injection instructions
Nozzle: Diameter min. 3 mmHolding pressure: 50 to 80% of injection pressureHydraulic back pressure: 5 to 10 bar, no decompression (specific back pressure 50 to 100 bar)
Note Message
1 .determined on 2 mm sheets with film gate at rim mold temperature 80°C
2 .determined on 2 mm sheets with film gate at rim mold temperature 80°C
3 .Post shrinkage, determined on 2 mm sheets with film gate at rim after 4 h heat aging at 150°C
4 .Post shrinkage, determined on 2 mm sheets with film gate at rim after 4 h heat aging at 150°C
5 .Roa
6 .K20/P50
7 .100 drops value
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