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Master Bond adhesives

Chesterton ARC S7 High Temperature & Chemical Resistant Novolac Vinyl Ester Coating
Categories: Polymer; Thermoset; Vinyl Ester

Material Notes: Description: ARC S7 is a low VOC, epoxy novolac vinyl ester based coating intended for high temperature exposures in chemically aggressive applications where the risk for thermal cycling may be present. It is highly resistant to a wide range of inorganic as well as organic acids and hydrocarbon based chemical compounds. The product utilizes a unique reinforcement design allowing it to be highly resistant to thermal cycling exposures up to 180°C (355°F) while maintaining its adhesion and resisting cracking, delamination and permeation. ARC S7 is able to be spray applied via conventional airless spray systems at a wet film thickness of 0.25-0.5 mm (10-20 mils) per coat. ARC S7 may also be applied by brush and roller, though with reduced film build. It is recommended to be applied in two coats for elimination of holidays and pinholes.

Benefits:

  • Resistant to thermal cycling
  • Resistant to cold wall induced blistering
  • ARC S7 is well suited for aggressive chemical exposures at elevated exposures and is easily sprayed with conventional spray equipment
  • ARC S7 does not require a primer and is capable of in-situ curing

Suggested Uses:

  • Flue gas ducts
  • Quench zones
  • Process tanks
  • Storage tanks
  • Steel structures
  • Bag filters
  • Reactor domes

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 2.10 g/cc0.0759 lb/in³Cured
Volatile Organic Compounds (VOC) Content 550 g/l
@Temperature 43.0 °C
550 g/l
@Temperature 109 °F
EPA 24
 
Mechanical PropertiesMetricEnglishComments
Hardness, Shore D 8989ASTM D2240
Elongation at Break 1.04 %1.04 %ASTM D638
Flexural Strength 51.7 MPa7500 psiASTM D790
Flexural Modulus 6.23 GPa903 ksiASTM D790
Compressive Strength 110 MPa16000 psiASTM D695
Adhesive Bond Strength >= 16.3 MPa>= 2370 psiASTM D4541
Impact Test 9.04 J6.67 ft-lbdirect; ASTM D2794
 
Thermal PropertiesMetricEnglishComments
Maximum Service Temperature, Air 135 °C275 °FWet Service (water)
 180 °C356 °FDry Service (continuous)
 
Processing PropertiesMetricEnglishComments
Cure Time  60.0 min
@Temperature 29.0 °C
1.00 hour
@Temperature 84.2 °F
Overcoat Begin
 120 min
@Temperature 21.0 °C
2.00 hour
@Temperature 69.8 °F
Overcoat Begin
 180 min
@Temperature 29.0 °C
3.00 hour
@Temperature 84.2 °F
Overcoat End
 240 min
@Temperature 21.0 °C
4.00 hour
@Temperature 69.8 °F
Overcoat End
 270 min
@Temperature 16.0 °C
4.50 hour
@Temperature 60.8 °F
Overcoat End
 300 min
@Temperature 10.0 °C
5.00 hour
@Temperature 50.0 °F
Overcoat End
 360 min
@Temperature 16.0 °C
6.00 hour
@Temperature 60.8 °F
Overcoat Begin
 720 min
@Temperature 10.0 °C
12.0 hour
@Temperature 50.0 °F
Overcoat Begin
 960 min
@Temperature 29.0 °C
16.0 hour
@Temperature 84.2 °F
Full Chemical
 1440 min
@Temperature 21.0 °C
24.0 hour
@Temperature 69.8 °F
Full Chemical
 2880 min
@Temperature 16.0 °C
48.0 hour
@Temperature 60.8 °F
Full Chemical
 4320 min
@Temperature 10.0 °C
72.0 hour
@Temperature 50.0 °F
Full Chemical
Tack-Free Time  70.02 min
@Temperature 29.0 °C
1.167 hour
@Temperature 84.2 °F
without MEK
 76.02 min
@Temperature 29.0 °C
1.267 hour
@Temperature 84.2 °F
with MEK
 100 min
@Temperature 21.0 °C
1.67 hour
@Temperature 69.8 °F
without MEK
 120 min
@Temperature 16.0 °C
2.00 hour
@Temperature 60.8 °F
without MEK
 120 min
@Temperature 21.0 °C
2.00 hour
@Temperature 69.8 °F
with MEK
 140 min
@Temperature 10.0 °C
2.33 hour
@Temperature 50.0 °F
without MEK
 180 min
@Temperature 10.0 °C
3.00 hour
@Temperature 50.0 °F
with MEK
 1500 min
@Temperature 16.0 °C
25.0 hour
@Temperature 60.8 °F
with MEK

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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