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PC LEXAN™  EXL9414P-5T6A8219 SABIC INNOVATIVE NANSHA

186
  • Unit Price:US$ 4,247 /MT
  • Packaging Specification:
    25 KG/PKG
  • Packaging Material:
    Paper bag
  • Supply Quantity:
    53MT
  • Delivery Terms:
    FOB
  • Port of Loading :
    China Main Port
  • Accepted Payment Methods:
    T/T
  • Shipping:
    Negotiate supplier for shipping details

Supplier Information

ASIA PLASTIC EXCHANGE LIMITED

+86 755 ********View
serv********View
+86 ********View

For more details, please contact the supplier!

Material Description

  • Material Properties:High mobilityHigh ductility at low temperature
  • Application Areas:Plastic bagQuick charging phone case
  • Color:--
  • Grade:Injection grade

Technical Data Sheet

impact performanceTest ConditionTest MethodTest Result
Charpy Notched Impact Strength-30°CISO 179/1eA29 kJ/m²
Charpy Notched Impact Strength23°CISO 179/1eA75 kJ/m²
Dart impact23°C, Total EnergyASTM D376367.0 J
flammabilityTest ConditionTest MethodTest Result
UL flame retardant rating0.50 mmUL 94V-2
UL flame retardant rating0.8 mmUL 94V-1
UL flame retardant rating1.0 mmUL 94V-0
UL flame retardant rating1.5 mmUL 945VB
UL flame retardant rating3.1 mmUL 945VA
Burning wire flammability index1.0 mmIEC 60695-2-12960 °C
Hot filament ignition temperature1.0 mmIEC 60695-2-13850 °C
Extreme Oxygen IndexISO 4589-239 %
mechanical propertiesTest ConditionTest MethodTest Result
Tensile modulus--2ASTM D6382110 Mpa
Tensile modulus--ISO 527-2/12140 Mpa
tensile strengthYield3ASTM D63856.0 Mpa
tensile strengthYieldISO 527-2/5057.0 Mpa
tensile strengthBreak3ASTM D63862.0 Mpa
tensile strengthBreakISO 527-2/5060.0 Mpa
elongationYield3ASTM D6385.8 %
elongationYieldISO 527-2/505.6 %
elongationBreak3ASTM D638110 %
elongationBreakISO 527-2/50110 %
Bending modulus50.0 mm Span4ASTM D7902190 Mpa
Bending modulus--5ISO 1782180 Mpa
bending strength--5,6ISO 17886.0 Mpa
bending strengthYield, 50.0 mm Span4ASTM D79088.0 Mpa
injectionTest ConditionTest MethodTest Result
drying temperature120 °C
drying time3.0 to 4.0 hr
Suggested maximum moisture content0.020 %
Suggested injection volume40 to 60 %
Temperature at the rear of the barrel270 to 295 °C
Temperature in the middle of the barrel280 to 305 °C
Temperature at the front of the material cylinder295 to 315 °C
Spray nozzle temperature290 to 310 °C
Processing (melt) temperature295 to 315 °C
Mold temperature70 to 95 °C
Back pressure0.300 to 0.700 Mpa
Screw speed40 to 70 rpm
Exhaust hole depth0.025 to 0.076 mm
thermal performanceTest ConditionTest MethodTest Result
Hot deformation temperature0.45 MPa, Unannealed, 3.20 mmASTM D648134 °C
Hot deformation temperature0.45 MPa, Unannealed, 4.00 mm, 100 mm Span9ISO 75-2/Be131 °C
Hot deformation temperature1.8 MPa, Unannealed, 3.20 mmASTM D648118 °C
Hot deformation temperature1.8 MPa, Unannealed, 4.00 mm, 100 mm Span9ISO 75-2/Ae117 °C
Vicat softening temperature--ISO 306/B50136 °C
Vicat softening temperature--ISO 306/B120138 °C
Linear coefficient of thermal expansionFlow : -40 to 40°CASTM E8316.9E-5 cm/cm/°C
Linear coefficient of thermal expansionFlow : 23 to 80°CISO 11359-27.4E-5 cm/cm/°C
Linear coefficient of thermal expansionAcross Flow : -40 to 40°CASTM E8317.3E-5 cm/cm/°C
Linear coefficient of thermal expansionAcross Flow : 23 to 80°CISO 11359-27.6E-5 cm/cm/°C
Physical propertiesTest ConditionTest MethodTest Result
melt mass-flow rate300°C/1.2 kgASTM D123812 g/10 min
Melt Volume Flow Rate (MVR)300°C/1.2 kgISO 113310.0 cm3/10min
Shrinkage rateFlow : 3.20 mmInternal Method0.40 - 0.80 %
Shrinkage rateAcross FlowFlow : 3.20 mmInternal Method0.40 - 0.80 %
Electrical performanceTest ConditionTest MethodTest Result
Surface resistivityASTM D257> 1.0E+16 ohms
Volume resistivityASTM D257> 1.0E+16 ohms·cm
Dielectric strength3.20 mm, in OilASTM D14913 KV/mm
Dielectric constant1.10 GHzASTM ES7-832.78
Dissipation factor1.10 GHzASTM ES7-836.0E-3
hardnessTest ConditionTest MethodTest Result
Rockwell hardnessL -SaleASTM D78583
Rockwell hardnessR-ScaleASTM D785117
IMPORTANT NOTES: Plas.com collected the data in the data sheet from the material manufacturers. Plas.com makes the best effort to improve the accuracy of the data, but has no responsibility for the data. We strongly recommend verifying the validity of the data with the material manufacturers before making a final decision.