MAJORIS EW367HM - 8229

Category: PP Copolymer , Polypropylene Copolymer
Manufacturer: AD majoris
Trademark: MAJORIS
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: hX3Obg_MAJORIS-EW367HM---8229.pdf
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Message
EW367HM - 8229 is a 30% glass fibre/ mineral filled polypropylene copolymer compound intended for injection moulding.

The product is available in both black (EW377HM - 8229) and natural (EW377HM) but other colours can be provided on request.

EW367HM - 8229 has been developed especially for the lighting applications and electrical components.

EW367HM - 8229 is formulated to give an excellent surface finish.

APPLICATION
Products requiring good rigidity, low shrinkage, high dimensional and high UV stability can suitably be made from EW367HM - 8229.
General Information
Filler / Reinforcement
  • Glass \mineral, 30% filler by weight
Additive
  • UV stabilizer
Features
  • Good dimensional stability
  • Excellent appearance
  • Copolymer
  • Good UV resistance
  • Recyclable materials
  • Low shrinkage
  • Medium hardness
Uses
  • Lighting Applications
  • Electrical components
Appearance
  • Black
  • Available colors
  • Natural color
Forms
  • Particle
Processing Method
  • Injection molding
PhysicalNominal ValueUnitTest Method
Density 1.12g/cm³ISO 1183
Melt Mass-Flow Rate (MFR) (230°C/2.16 kg)12g/10 minISO 1133
Molding Shrinkage 0.55 - 1.0%
MechanicalNominal ValueUnitTest Method
Tensile Modulus 3630MPaISO 527-2/1
Tensile Stress (Yield)48.5MPaISO 527-2/50
Flexural Modulus 13680MPaISO 178
Flexural Stress 85.5MPaISO 178
ImpactNominal ValueUnitTest Method
Charpy Notched Impact Strength (23°C)8.2kJ/m²ISO 179
Charpy Unnotched Impact Strength (23°C)No BreakISO 179
FlammabilityNominal ValueTest Method
Flame Rating HBUL 94
InjectionNominal ValueUnit
Drying Temperature 80.0°C
Drying Time 3.0hr
Processing (Melt) Temp 210 - 260°C
Mold Temperature 30.0 - 50.0°C
Injection Rate Moderate
Injection instructions
Holding pressure: 50 to 70% of the injection pressure
Note Message
1 .2.0 mm/min
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