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塑胶原料报价
PC/ABS C3650 无溴无氯阻燃,高冲击,耐热
  • 产 品:PC/ABS C3650 无溴无氯阻燃,高冲击,耐热
  • 产 地: 沙伯基础创新
  • 价 格:电话报价
  • 库 存:20吨
  • 交 货:江苏苏州
  • 苏州希普能:185 5121 3137 谭经理

Cycoloy* Extrusion Resin
Impact & Ductility for Large Panels
A Polycarbonate/Acrylonitrile Butadiene Styrene (PC/ABS) alloy designed for sheet and other extrusions. Can be used for such applications as body and other large panels, as well as corrugated electrical conduit. Provides high impact strength and ductility, Class A paintable surfaces, and dimensional and heat aging stability.

Cycoloy* Resin C3650 数据
Flame retardant PC/ABS blend using non-brominated and non-chlorinated flame retardant systems, offering high impact and excellent extrusion and thermoforming characteristics. Halogen free according to DIN VDE 0472/815 for cable channels

Property
TYPICAL PROPERTIES (1)

MECHANICAL Value Unit Standard
Tensile Stress,yld,Type I,50mm/min 660 kgf/cm² ASTM D 638
Tensile Stress,brk,Type I,50mm/min 520 kgf/cm² ASTM D 638
Tensile Strain,yld,Type I,50mm/min 4.9 % ASTM D 638
Tensile Strain,brk,Type I,50mm/min 35 % ASTM D 638
Tensile Modulus,50mm/min 29100 kgf/cm² ASTM D 638
Flexural Stress,yld,1.3mm/min,50mm span 1030 kgf/cm² ASTM D 790
Flexural Modulus,1.3mm/min,50mm span 27400 kgf/cm² ASTM D 790
Tensile Stress,yield,5mm/min 55 MPa ISO 527
Tensile Stress,break,5mm/min 50 MPa ISO 527
Tensile Stress,yield,50mm/min 65 MPa ISO 527
Tensile Stress,break,50mm/min 55 MPa ISO 527
Tensile Strain,yield,5mm/min 3 % ISO 527
Tensile Strain,break,5mm/min 55 % ISO 527
Tensile Strain,yield,50mm/min 4.5 % ISO 527
Tensile Strain,break,50mm/min >50 % ISO 527
Tensile Modulus,1mm/min 2600 MPa ISO 527
Flexural Stress,yield,2mm/min 100 MPa ISO 178
Flexural Modulus,2mm/min 2700 MPa ISO 178
Hardness,H358/30 113 MPa ISO 2039-1
Hardness,Rockwell R 124 - ISO 2039-2
IMPACT Value Unit Standard
Izod Impact,notched,23℃ 70 cm-kgf/cm ASTM D 256
Instrumented Impact Total Energy,23℃ 662 cm-kgf ASTM D 3763
Izod Impact,notched 80*10*4 +23℃ 45 kJ/m² ISO 180/1A
Izod Impact,notched 80*10*4 0℃ 15 kJ/m² ISO 180/1A
Izod Impact,notched 80*10*4 -30℃ 13 kJ/m² ISO 180/1A
Charpy 23℃,V-notch Edgew 80*10*4 sp=62mm 48 kJ/m² ISO 179/1eA
Charpy -30℃,V-notch Edgew 80*10*4 sp=62mm 13 kJ/m² ISO 179/1eA
THERMAL Value Unit Standard
Vicat Softening Temp,Rate B/50 110 ASTM D 1525
HDT,0.45 MPa,3.2mm,unannealed 100 ASTM D 648
HDT,1.82 MPa,3.2mm,unannealed 88 ASTM D 648
CTE,-40℃ to 40℃,flow 7.20E-05 1/℃ ASTM E 831
CTE,-40℃ to 40℃,xflow 7.20E-05 1/℃ ASTM E 831
Thermal Conductivity 0.2 W/m-℃ ISO 8302
CTE,23℃ to 60℃,flow 8.00E-05 1/℃ ISO 11359-2
CTE,23℃ to 60℃,xflow 8.00E-05 1/℃ ISO 11359-2
Vicat Softening Temp,Rate B/50 108 ISO 306
Vicat Softening Temp,Rate B/120 110 ISO 306
HDT/Be,0.45MPa Edgew 120*10*4 sp=100mm 102 ISO 75/Be
HDT/Ae,1.8 MPa Edgew 120*10*4 sp=100mm 91 ISO 75/Ae
Relative Temp Index,Elec 60 UL 746B
Relative Temp Index,Mech w/impact 60 UL 746B
Relative Temp Index,Mech w/o impact 60 UL 746B
PHYSICAL Value Unit Standard
Specific Gravity 1.2 - ASTM D 792
Water Absorption,(23℃/sat) 0.6 % ASTM D 570
Mold Shrinkage,flow,3.2mm(5) 0.4-0.6 % SABIC Method
Melt Flow Rate,260℃/5.0 kgf 8.5 g/10 min ASTM D 1238
Density 1.18 g/cm³ ISO 1183
Melt Volume Rate,MVR at 260℃/5.0 kg 8 cm³/10 min ISO 1133
ELECTRICAL Value Unit Standard
Dissipation Factor,50/60 Hz 0.006 - ASTM D 150
Volume Resistivity >1.E+15 Ohm-cm IEC 60093
Surface Resistivity,ROA >1.E+15 Ohm IEC 60093
Dielectric Strength,in oil,0.8mm 35 kV/mm IEC 60243-1
Dielectric Strength,in oil,1.6mm 25 kV/mm IEC 60243-1
Dielectric Strength,in oil,3.2mm 17 kV/mm IEC 60243-1
Relative Permittivity,1 MHz 2.7 - IEC 60250
Dissipation Factor,50/60 Hz 0.004 - IEC 60250
Dissipation Factor,1 MHz 0.006 - IEC 60250
Comparative Tracking Index 600 V IEC 60112
Relative Permittivity,50/60 Hz 2.8 - IEC 60250
FLAME CHARACTERISTICS Value Unit Standard
UL Recognized,94V-0 Flame Class Rating(3) 1.49 mm UL 94
UL Recognized,94-5VB Rating(3) 2.48 mm UL 94
Oxygen Index(LOI) 37 % ISO 4589
Source GMD,last updated:2001/05/26
Parameter Injection Molding Value Unit
Drying Temperature 80-90
Drying Time 3-4 hrs
Drying Time(Cumulative) 8 hrs
Maximum Moisture Content 0.04 %
Melt Temperature 245-275
Nozzle Temperature 245-275
Front-Zone 3 Temperature 245-275
Middle-Zone 2 Temperature 220-265
Rear-Zone 1 Temperature 220-255
Mold Temperature 60-80
Back Pressure 0.3-0.7 MPa
Screw Speed 40-70 rpm
Shot to Cylinder Size 30-80 %
Vent Depth 0.038-0.076 mm
Parameter Extrusion Blow Molding Value Unit
Drying Temperature 80-90
Drying Time 2-4 hrs
Drying Time(Cumulative) 8 hrs
Maximum Moisture Content 0-0.02 %
Melt Temperature(Parison) 225-250
Barrel-Zone 1 Temperature 205-230
Barrel-Zone 2 Temperature 215-245
Barrel-Zone 3 Temperature 215-245
Barrel-Zone 4 Temperature 220-250
Adapter-Zone 5 Temperature 225-250
Head-Zone 6-Top Temperature 225-250
Head-Zone 7-Bottom Temperature 225-250
Mold Temperature 65-90
Die Temperature 240-250
Parameter Profile Extrusion Value Unit
Drying Temperature 80-90
Drying Time 2-4 hrs
Drying Time(Cumulative) 8 hrs
Minimum Moisture Content 0-0.02 %
Melt Temperature 225-270
Barrel-Zone 1 Temperature 205-250
Barrel-Zone 2 Temperature 215-260
Barrel-Zone 3 Temperature 215-260
Barrel-Zone 4 Temperature 225-270
Adapter Temperature 225-270
Die Temperature 225-270
Calibrator Temperature 60-80
Source GMD,last updated:2001/05/26
THESE PROPERTY VALUES ARE NOT INTENDED FOR SPECIFICATION PURPOSES.
PLEASE CONTACT US FOR AVAILABILITY IN YOUR REGION.

(1) Typical values only. Variations within normal tolerances are possible for various colors. All values are measured after at least 48 hours storage at 23/50% relative humidity. All properties, except the melt volume and melt flow rates, are measured on injection molded samples. All samples tested under ISO test standards are prepared according to ISO 294.
(2) Only typical data for selection purposes. Not to be used for part or tool design.
(3) This rating is not intended to reflect hazards presented by this or any other material under actual fire conditions.
(4) Internal measurements according to UL standards.
(5) Measurements made from laboratory test coupon. Actual shrinkage may vary outside of range due to differences in processing conditions, equipment, part geometry and tool design. It is recommended that mold shrinkage studies be performed with surrogate or legacy tooling prior to cutting tools for new molded article.

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