PARALOID™ AU-608B

PARALOID™ AU-608B are acrylic polyols specifically designed to produce hard, resistant, durable coatings when reacted with aliphatic isocyanates. The exceptional properties of these coatings have led to increased use in such heavy-duty maintenance applications as chemical plant storage tanks and offshore rigs and platforms.

Principal: Dow Coating Materials

Chemical Family: Chemical Mixtures & Blends

End Uses: Primer, Top Coat

Features: Abrasion Resistance, Chemical Resistance, Corrosion Resistance, Crack Resistance, Excellent Flexibility, Film Integrity, Good Gloss Retention, Good Hardness, High Cross Linked Density, High Durability, High Gloss, High Performance, Improved Hardness, Long Lasting Finish, Low Temperature-Curing, Tint Retention

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Enhanced TDS

Identification & Functionality

Blend
No
Chemical Family
Product Code
MITM04009
Single Ingredient
Yes
Technologies
Product Families

Features & Benefits

CASE Ingredients Features
Key Features
  • These products are typically used as high-performance topcoats.
  • They have exceptional gloss and tint retention with very good resistance properties. As topcoats, they can be used over many primers.
  • A typical system consists of an inorganic zinc-rich primer, a high-build epoxy polyamide midcoat with an acrylic urethane coating based on any AU-608 grade being used as the topcoat.
  • In other applications, PARALOID™ AU-608B is the choice if one needs a HAPS-free solvent system.

Applications & Uses

Application Method
Coating End Applications
Markets
Applications
Formulating Suggestions

The two-component formulations given herein are recommended for initial evaluation of PARALOID™ AU-608S or PARALOID™ AU-608X. The recommended ratio (solids basis) for PARALOID™ AU-608S or PARALOID™ AU- 608X/aliphatic isocyanate is 75/25 weight percent. This corresponds to a slight excess of isocyanate resin (1.0/1.05 meq hydroxyl/isocyanate). For best pot life, polyurethane grade solvents are recommended and contamination with water should be avoided. The following formulating suggestions are offered:

Isocyanate
Aliphatic (hexamethylenediisocyanates; HMDI) isocyanates are recommended for best weathering properties. The isocyanates of HMDI, such as Desmodur N-3300 and Luxate HT 2000, impart better appearance durability in PARALOID AU-608S urethane coatings than the biurets of HMDI, such as Desmodur N-75 (see exposure data in Table 3). Either Desmodur N-3300 or Luxate HT 2000 can be substituted on an equal solids basis for Desmodur N- 75 in the formulations given herein.


Catalyst Suggestions
Coatings using PARALOID™ AU-608S or PARALOID™ AU-608X develop properties more rapidly with the use of a tin catalyst such as MetacureTM T-12 (dibutyltin dilaurate). In practice, we recommend levels of 0.01 to 0.05% based on vehicle solids. The lower level appears to be better for chemical resistance properties and extended pot life, while the higher provides very rapid dry times.

Flow Aid
In many formulations, the addition of a flow aid is beneficial. Either SF-1023 Silicone or BYKTM 300 can be tried in this application at a maximum of 0.1% on total resin solids.


UV Absorbers
The addition of UV absorbers (1% each of TinuvinTM 328 and Tinuvin 292 on total resin solids) can enhance the weathering properties of acrylic urethane coatings.

Colorants
Most colors can be produced using a sand or media mill grind in PARALOID AU-608S and PARALOID™ AU-608X. In some instances, it may be preferable to use a grinding medium such as PARALOID™ DM-55. If predispersed colorants are preferred, we recommend the use of acrylic-based colorants such as the Colortrend™ 844 Series.


Solvents
If faster hardness development is required for PARALOID™ AU-608S based coatings, we recommend the use of nbutyl acetate as a partial or total replacement for PM acetate in the suggested starting point formulation.


Defoamer
Dehydran™ ARA-7219 has been found to be an effective air release agent at 0.1 to 0.2% (on total paint weight) to minimize foam, particularly in airless spray applications.

Properties

Physical Form

Technical Details & Test Data

Performance Characteristics
  • Acrylic urethane coatings based on PARALOID™ AU-608B resins demonstrate excellent performance properties which allow these coatings to perform well in highly corrosive atmospheres.
  • The following tables demonstrate the performance obtainable with the suggested starting point formulation based on PARALOID™ AU-608S resin listed in this literature.

Packaging & Availability

Packaging Type

Other

Acid Number
10.0 mg KOH/g
Autoignition Temperature (SDS)
421.0 °C
Boiling Point (SDS)
124.0 °C
Bulking Value
0.116 gal/lb
Color Scale
max. 60.0 APHA
Density
8.6 lb/gal
Evaporation Rate (SDS)
min. 1.0 %
Flash Point (SDS)
28.0 °C
Glass Transition Temperature (Tg)
55.0 °C
IATA/ICAO Proper Shipping Name
Resin solution
IATA/ICAO UN Number
UN1866
IMO/IMDG Proper Shipping Name
Resin solution
IMO/IMDG UN Number
UN1866
Item Number
Lower Explosion Limit (SDS)
1.7 %(V)
Melting Point (SDS)
-18.0 °C
Molecular Weight
20000.0 g/mol
Non-Volatile Content
62.0 %
Odor (SDS)
Sweet odor
Principal
Relative Density (SDS)
1.05
Relative Vapor Density (SDS)
min. 100.0
Solid Content
60.0 %
Specific Gravity
1.03
TDG Canada Proper Shipping Name
Resin solution
TDG Canada UN Number
UN1866
Upper Explosion Limit (SDS)
7.6 %(V)
Vapor Pressure (SDS)
10.665792 Pa
Viscosity
4500.0 cPs
Viscosity (SDS)
3000.0-6000.0 mPa.s
Volatile Content (SDS)
39.0-41.0 %
Optical Properties
ValueUnitsTest Method / Conditions
Color Scalemax. 60.0 APHAAPHA
Chemical Properties
ValueUnitsTest Method / Conditions
Acid Number10.0 mg KOH/gmg KOH/g
Physical Properties
ValueUnitsTest Method / Conditions
Bulking Value0.116 gal/lbgal/lb
Density8.6 lb/gallb/gal
Glass Transition Temperature (Tg)55.0 °C°C
Molecular Weight20000.0 g/molg/mol
Specific Gravity1.03-
Viscosity4500.0 cPscPsAt 25°C
Material Composition
ValueUnitsTest Method / Conditions
Non-Volatile Content62.0 %%at 105°C
Solid Content60.0 %%at 105°C
SDS Physical and Chemical Properties
ValueUnitsTest Method / Conditions
Autoignition Temperature (SDS)421.0 °C°C
Boiling Point (SDS)124.0 °C°Cat 68°F, water = 1, liquid
Evaporation Rate (SDS)min. 1.0 %%Butyl Acetate = 1
Flash Point (SDS)28.0 °C°CSetaFlash Closed Cup
Lower Explosion Limit (SDS)1.7 %(V)%(V)
Melting Point (SDS)-18.0 °C°C
Relative Density (SDS)1.05-
Relative Vapor Density (SDS)min. 100.0-
Upper Explosion Limit (SDS)7.6 %(V)%(V)
Vapor Pressure (SDS)10.665792 PaPaat 20 ℃
Viscosity (SDS)3000.0-6000.0 mPa.smPa.s
Volatile Content (SDS)39.0-41.0 %%