EMERGE™ PC 4903

Category: PC , Advanced Resin
Manufacturer: Trinseo
Trademark: EMERGE™
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: Z7nA6M_EMERGE-PC-4903.pdf
PRICE: ​Order Products​ email   sales@su-jiao.com
Wechat: WECHAT
Message
EMERGE PC 4903 is a 30% glass fiber reinforced high flow ignition resistant polycarbonate resin. This resin does not contain bromine and chlorine flame retardants. EMERGE PC 4903 is designed with superior processability for use in structural parts of printers, scanners, copiers as well as internal parts for ITE applications.

Applications:
  • Structural parts of printers, scanners, and copiers
  • Internal parts of ITE machines
General Information
Filler / Reinforcement
  • Glass Fiber, 30% Filler by Weight
Features
  • Bromine Free
  • Chlorine Free
  • Flame Retardant
  • Good Processability
  • High Flow
Uses
  • Business Equipment
  • Structural Parts
Forms
  • Pellets
Processing Method
  • Injection Molding
PhysicalNominal ValueUnitTest Method
Specific Gravity 1.46g/cm³ASTM D792
Melt Mass-Flow Rate (MFR) (300°C/1.2 kg)12g/10 minASTM D1238
Molding Shrinkage - Flow 0.20 to 0.40%ASTM D955
MechanicalNominal ValueUnitTest Method
Tensile Modulus 6800MPaASTM D638
Tensile Strength (Yield, 3.20 mm, Injection Molded)116MPaASTM D638
Flexural Modulus (3.20 mm, Injection Molded)8400MPaASTM D790
Flexural Strength (3.20 mm, Injection Molded)155MPaASTM D790
ImpactNominal ValueUnitTest Method
Notched Izod Impact (23°C, 3.20 mm, Injection Molded)130J/mASTM D256
ThermalNominal ValueUnitTest Method
Deflection Temperature Under Load (1.8 MPa, Unannealed)100°CASTM D648
FlammabilityNominal ValueTest Method
Flame Rating UL 94
    1.00 mm 1V-0
    2.00 mm 5VA
InjectionNominal ValueUnit
Drying Temperature 110°C
Drying Time 6.0 to 8.0hr
Rear Temperature 250 to 260°C
Middle Temperature 260 to 270°C
Front Temperature 260 to 280°C
Nozzle Temperature 271 to 300°C
Mold Temperature 60.0 to 100°C
Note Message
1 .This rating not intended to reflect hazards presented by this or any other material under actual fire conditions.
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