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Master Bond adhesives

Chesterton ARC S2 Ceramic reinforced erosion resistant coating
Categories: Ceramic; Polymer; Thermoset; Epoxy

Material Notes: Description: An advanced ceramic composite for the resurfacing and protection of all metal surfaces. It is normally applied at a thickness of 250 microns (10 mils) per coat. Non-shrinking, 100% solids. ARC S2 is formulated for the resurfacing of metal components subjected to extreme corrosive or severe fluid flow conditions. ARC S2 is a low viscosity composite that is designed to be spray applied but may also be applied by roller or brush. This product is formulated as a two coat system to provide extended wear life for plant equipment. Cured ARC S2 provides a high gloss ceramic surface with resistance to erosion-corrosion.

Benefits:

  • High gloss finish reduces drag, improves pump efficiency on worn components
  • Tough resin structure resists thermal-mechanical shock
  • Outstanding adhesion insures reliable performance against under film corrosion
  • Labor and downtime are reduced due to ease of application and rapid curing
  • Convenient 2-1 volumetric mix ratio and verification of mix by color change
  • Performs well under fluctuating chemical environments.

Suggested Uses:

  • Fans & Housings
  • Heat Exchangers
  • Hoppers
  • Tank Linings
  • Valve Assemblies
  • Waterboxes
  • Cooling Water Systems
  • Pump Components
  • Scrubber Systems
  • Pipeline Coatings

Information provided by Chesterton

Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Density 1.60 g/cc0.0578 lb/in³Cured
 
Mechanical PropertiesMetricEnglishComments
Hardness, Shore D 8585ASTM D2240
Tensile Strength at Break 46.2 MPa6700 psiASTM D638
Elongation at Break 4.0 %4.0 %ASTM D638
Flexural Strength 75.8 MPa11000 psiASTM D790
Flexural Modulus 5.45 GPa790 ksiASTM D790
Compressive Strength 64.8 MPa9400 psiASTM D695
Adhesive Bond Strength >= 14.5 MPa>= 2100 psiLap Shear; ASTM D4541
Taber Abrasion, mg/1000 Cycles 280
@Load 1.00 kg
280
@Load 2.20 lb
H-18, (loss); ASTM D4060
Abrasion 2.42.4[%], Weight Loss, Jet Abrasion; Federal Test method Spec. 6193 Modified
 
Thermal PropertiesMetricEnglishComments
Maximum Service Temperature, Air 52.0 °C126 °FWet Service
 80.0 °C176 °FDry Service
 
Processing PropertiesMetricEnglishComments
Cure Time  300 min
@Temperature 32.0 °C
5.00 hour
@Temperature 89.6 °F
Light Load
 600 min
@Temperature 25.0 °C
10.0 hour
@Temperature 77.0 °F
Light Load
 600 min
@Temperature 32.0 °C
10.0 hour
@Temperature 89.6 °F
Overcoat End
 840 min
@Temperature 32.0 °C
14.0 hour
@Temperature 89.6 °F
Full Load
 1080 min
@Temperature 16.0 °C
18.0 hour
@Temperature 60.8 °F
Light Load
 1200 min
@Temperature 25.0 °C
20.0 hour
@Temperature 77.0 °F
Overcoat End
 1440 min
@Temperature 10.0 °C
24.0 hour
@Temperature 50.0 °F
Light Load
 1440 min
@Temperature 25.0 °C
24.0 hour
@Temperature 77.0 °F
Full Load
 1440 min
@Temperature 32.0 °C
24.0 hour
@Temperature 89.6 °F
Full Chemical
 1800 min
@Temperature 16.0 °C
30.0 hour
@Temperature 60.8 °F
Overcoat End
 2400 min
@Temperature 10.0 °C
40.0 hour
@Temperature 50.0 °F
Overcoat End
 2880 min
@Temperature 16.0 °C
48.0 hour
@Temperature 60.8 °F
Full Load
 2880 min
@Temperature 25.0 °C
48.0 hour
@Temperature 77.0 °F
Full Chemical
 3600 min
@Temperature 10.0 °C
60.0 hour
@Temperature 50.0 °F
Full Load
 5760 min
@Temperature 16.0 °C
96.0 hour
@Temperature 60.8 °F
Full Chemical
 7200 min
@Temperature 10.0 °C
120 hour
@Temperature 50.0 °F
Full Chemical
Tack-Free Time  60.0 min
@Temperature 32.0 °C
1.00 hour
@Temperature 89.6 °F
 120 min
@Temperature 25.0 °C
2.00 hour
@Temperature 77.0 °F
 180 min
@Temperature 16.0 °C
3.00 hour
@Temperature 60.8 °F
 360 min
@Temperature 10.0 °C
6.00 hour
@Temperature 50.0 °F
 
Descriptive Properties
ColorGray
 Green

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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