Vipel® F010-CNP-25

Category: Vinyl Ester , Vinyl Ester
Manufacturer: AOC, L.L.C.
Trademark: Vipel®
Fillers: -
Ports: Qinzhou, Shekou, Shanghai, Ningbo
Delivery Terms FOB, CIF, DAP, DAT, DDP
PDF: uqqQZy_Vipel-F010-CNP-25.pdf
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Vipel Corrosion Resistant Bisphenol A, Epoxy Vinyl Ester Resins

AOC's Vipel F010 series is a bisphenol A epoxy-based vinyl ester resin dissolved in styrene. The Vipel F010 series is ideally suited for use in hand lay-up, sprayup, filament winding, SMC, and pultrusion processes where outstanding mechanical properties and excellent resistance to chemicals and heat are required.

Versatile
Wide formulating capabilities allow for use in many processes and for optimization
of cost/performance. Unique composition produces a tough and versatile resin with excellent crack
and craze resistance in molded parts. Vipel F010 is suitable for moldings that are subjected to particularly high static or dynamic loads, such as pipe, tanks, duct work and flooring applications. Vinyl ester resins have excellent resistance to sustained heat.

Corrosion Resistant
Vipel F010 highly resistant to hydrogen peroxide, and alkalis, and performs well in various stages of hypochlorite and chlorine production. Refer to AOC's "Corrosion Resistant Resin Guide" for corrosion resistance information or for questions regarding suitability of a resin to any particular chemical environment contact AOC.

Food and Drug
All resins in this datasheet are manufactured from raw materials that are listed in FDA regulation Title 21 CFR 177.2420. It is the fabricator's responsibility to also be sure that the final composite is well cured. All composites used for FDA applications should be post cured at 180°F/82°C for at least 4 hours. After post curing it should be washed with soap and water and rinsed.
General Information
Features
  • Alkali Resistant
  • Food Contact Acceptable
  • Good Corrosion Resistance
  • High Heat Resistance
Uses
  • Flooring Maintenance/Repair
  • Piping
  • Plumbing Parts
  • Tanks
Agency Ratings
  • FDA 21 CFR 177.2420
Forms
  • Liquid
Processing Method
  • Filament Winding
  • Hand Lay-up
  • Pultrusion
  • Spraying
PhysicalNominal ValueUnitTest Method
Specific Gravity 1.05g/cm³
Styrene Content 39%
ThermosetNominal ValueUnitTest Method
Exotherm
    Gel to Peak 7.0min
    Peak 188°C
Gel Time (25°C) 125.0min
Additional InformationNominal ValueUnitTest Method
Critical Strain Energy 100J/m²ASTM E399
Stress Intensity Factor 0.600ASTM E399
HardnessNominal ValueUnitTest Method
Barcol Hardness 39ASTM D2583
MechanicalNominal ValueUnitTest Method
Tensile Modulus 3170MPaASTM D638
Tensile Strength (Yield)88.3MPaASTM D638
Tensile Elongation (Break)6.2%ASTM D638
Flexural Modulus 3450MPaASTM D790
Flexural Strength 152MPaASTM D790
ThermalNominal ValueUnitTest Method
Deflection Temperature Under Load (1.8 MPa, Unannealed)120°CASTM D648
Glass Transition Temperature 130°CDIN 53445
ElectricalNominal ValueUnitTest Method
Surface Resistivity > 1.0E+13ohmsDIN 53482
Volume Resistivity 2> 1.0E+16ohms·cmDIN 53482
Electric Strength (0.700 mm)120kV/mmDIN 53481
Dielectric Constant DIN 53483
    60 Hz 33.50
    60 Hz 43.40
    1 kHz 53.50
    1 kHz 63.40
    1 MHz 73.40
    1 MHz 83.30
Dissipation Factor DIN 53483
    60 Hz 93.7E-3
    60 Hz 102.5E-3
    1 kHz 113.3E-3
    1 kHz 122.2E-3
    1 MHz 132.3E-3
    1 MHz 141.6E-3
ThermosetNominal ValueUnitTest Method
Thermoset Mix Viscosity 15(25°C)300cP
Post Cure Time (82°C)4.0hr
Note Message
1 .Gel time with 1.25% MEKP
2 .after 24 hrs in drinking water
3 .after 24 hrs in drinking water
4 .Dry
5 .after 24 hrs in drinking water
6 .Dry
7 .after 24 hrs in drinking water
8 .Dry
9 .after 24 hrs in drinking water
10 .Dry
11 .after 24 hrs in drinking water
12 .Dry
13 .after 24 hrs in drinking water
14 .Dry
15 .Brookfield RV viscosity spindle 2 at 20 rpm
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