NOVALAC RX®613

Category: Phenolic , Phenolic
Manufacturer: Vyncolit N.V.
Trademark: NOVALAC
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: K634Wg_NOVALAC-RX-613.pdf
PRICE: ​Order Products​ email   sales@su-jiao.com
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Message
NOVALAC RX®613 is a phenolic (Phenolic) material, and its filler is glass fiber reinforced material. This product is available in North America, Africa and the Middle East, Latin America, Europe or Asia Pacific. The processing methods are: resin transfer molding, compression molding or injection molding.

NOVALAC RX®The main features of the 613 are:
  • flame retardant/rated flame
  • chemical resistance
  • high strength
  • Creep resistance
  • Good dimensional stability

Typical application areas include:
  • Electrical/electronic applications
  • engineering/industrial accessories
  • electrical appliances
  • House
  • Tools
General Information
Filler / Reinforcement
  • Glass fiber reinforced material
Features
  • Ultra high toughness
  • Good dimensional stability
  • Low smoke
  • High strength
  • Antibacterial property
  • Solvent resistance
  • Good creep resistance
  • alkali resistance
  • acid resistance
Uses
  • Membrane key switch
  • Pump parts
  • Gear
  • Electrical/Electronic Applications
  • Electrical appliances
  • Power/other tools
  • Connector
  • Application in Automobile Field
  • Shell
Forms
  • Particles
Processing Method
  • Resin transfer molding
  • Compression molding
  • Injection molding
PhysicalNominal ValueUnitTest Method
Specific Gravity 1.60g/cm³ASTM D792, ISO 1183
Bulk Factor 2.1ASTM D1895
Molding Shrinkage
    Flow : Molding 0.25%ASTM D955
    Flow direction 0.25%ISO 294-4
Water Absorption (23°C, 24 hr)0.080%ASTM D570, ISO 62
HardnessNominal ValueUnitTest Method
Rockwell Hardness (E-Scale)100ASTM D785, ISO 2039-2
MechanicalNominal ValueUnitTest Method
Tensile Stress
    Fracture 85.0MPaISO 527-2
    -- 107MPaASTM D638
Flexural Modulus
    -- 12400MPaASTM D790
    -- 13000MPaISO 178
Flexural Strength
    -- 176MPaASTM D790
    -- 150MPaISO 178
Compressive Strength 296MPaASTM D695
ImpactNominal ValueUnitTest Method
Notched Izod Impact
    -- 37J/mASTM D256A
    -- 2.5kJ/m²ISO 180
ThermalNominal ValueUnitTest Method
Deflection Temperature Under Load
    1.8 MPa, not annealed 202°CASTM D648
    1.8 MPa, not annealed 185°CISO 75-2/A
CLTE - Flow 1.6E-5cm/cm/°CASTM D696
Thermal Conductivity 0.41W/m/KASTM C177
RTI Elec 150°CUL 746
RTI Imp 150°CUL 746
RTI 150°CUL 746
ElectricalNominal ValueUnitTest Method
Dielectric Strength
    -- 114kV/mmASTM D149
    -- 213kV/mmASTM D149
    -- 14kV/mmIEC 60243-1
Arc Resistance 150secASTM D495
FlammabilityNominal ValueUnitTest Method
Flame Rating UL 94
    1.59 mm V-0UL 94
    3.18 mm V-0UL 94
InjectionNominal ValueUnit
Rear Temperature 60.0°C
Middle Temperature 73.9°C
Nozzle Temperature 87.8°C
Processing (Melt) Temp 98.9 - 116°C
Mold Temperature 166 - 188°C
Back Pressure 0.207MPa
Injection instructions
Plastication: 50rpmInjection Pressure: Set to give 3 to 5 seconds injection timeHold Pressure: 50 to 100% of injection pressureHold Time: 10 sec minimumCure Time, 0.125 in: 30 to 35 secThe value listed as Thermal Conductivity, ASTM C177, was tested in accordance with ASTM C518.The value listed as Molding Shrinkage, ISO 294-4, was tested in accordance with ISO 2577 using compression molded specimens.Water Absorption, ASTM D570, 48 hrs, 50°C: 0.27%Flexural Strain, ASTM D790: 1.5%DTUL @264psi - Unannealed, ASTM D648, Post Baked: 550°FDielectric Strength, ASTM D149, 60 Hz, Method A, wet: 360 V/milDielectric Strength, ASTM D149, 60 Hz, Method B, wet: 330 V/milCompressive Strength, ISO 604: 350 MPaDielectric Strength, IEC 243, Method A, wet: 14 V/milCompression and Transfer Molding Conditions: Preforming Pressure: 8000 to 12000 psi Preheat Temperature: 210 to 235 °F Preheat Time: 45 sec Mold Temperature: 330 to 360 °F Compression Mold Pressure: 2500 to 5000 psi Transfer Mold Pressure: 4000 to 6000 psi Cure Time, 0.125 in: 40 to 50 sec
Note Message
1 .Method A (short time)
2 .Method B (step by step)
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