EBECRYL® 210

EBECRYL® 210 is an aromatic urethane diacrylate. Films of EBECRYL 210 cured by ultraviolet light (UV) or electron beam (EB) exhibit good flexibility, low color and good adhesion to various substrates.

Principal: allnex Radcure

Chemical Family: Chemical Mixtures & Blends

End Uses: Conformal Coating, Low Gloss Coating, Radiation Curable Coating, Screen Printing Ink, Wood Coating

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Enhanced TDS

Identification & Functionality

Blend
No
CASE Ingredients Functions
Chemical Family
Function
Oligomer, Monomer
Product Code
MITM10674
Single Ingredient
Yes
Technologies
Product Families

Features & Benefits

CASE Ingredients Features
Performance Highlights

EBECRYL®210 is characterized by:

  • Light color
  • Low odor

UV/EB cured products containing EBECRYL®210 are characterized by the following performance properties:

  • Adhesion to various substrates
  • Good flexibility
  • Reduced Tg

The actual properties of UV/EB cured products also depend on the selection of other formulation components such as reactive diluents, additives and photoinitiators.

Applications & Uses

Application Method
Coating End Applications
Compatible Substrates & Surfaces
Cure Method
Ink & Toner End Applications
Markets
Applications
Product Application

Formulated UV/EB curable products containing EBECRYL®210 may be applied via direct or reverse roll, offset gravure, metering rod, slot die, knife over roll, air knife, curtain, immersion and spin coating methods, as well as flexographic and screen printing. EBECRYL®210 is recommended for: 

  • Coatings on rigid and flexible plastics
  • Wood coatings
  • Screen inks
  • Low gloss coatings
  • Conformal coatings
  • A modifying oligomer to increase flexibility

Properties

Physical Form

Technical Details & Test Data

Viscosity Reduction

GRAPH I: EBECRYL®210 - VISCOSITY REDUCTION WITH REACTIVE DILUENTS

EBECRYL®210 - Viscosity Reduction with Reactive Diluents - 1

  • Graph I shows the viscosity reduction of EBECRYL®210with octyl/decyl acrylate (ODA-N)¹, propoxylated glycerol triacrylate (OTA-480)¹, trimethylolpropane triacrylate (TMPTA)¹, and tripropylene glycol diacrylate (TPGDA)¹.
  • Although viscosity reduction can be achieved with non-reactive solvents, reactive diluents are preferred because they are essentially 100 percent converted during UV/EB exposure to form a part of the coating or ink, thus reducing solvent emissions.
  • The specific reactive diluents used will influence performance properties such as hardness and flexibility.
  • ¹ Product of allnex

Packaging & Availability

Packaging Type

Principal Information

Group Principal Number
S000001
Principal

Storage & Handling

Storage and Handling Conditions
  • Care should be taken not to expose EBECRYL® 210 to high temperature conditions, direct sunlight, ignition sources, oxidizing agents, alkalis or acids.
  • This might cause uncontrollable polymerization of the product with the generation of heat.
  • Storage and handling should be in stainless steel, amber glass, amber polyethylene or baked phenolic lined containers.
  • Procedures that remove or displace oxygen from the material should be avoided.
  • Do not store this material under an oxygen free atmosphere.
  • Dry air is recommended to displace material removed from the container.
  • Wash thoroughly after handling.
  • Keep container tightly closed.
  • Use with adequate ventilation.

Other

Appearance
Clear liquid
Appearance (SDS)
Liquid
Color (SDS)
Clear colorless to pale yellow
Insoluble in (SDS)
Water
Item Number
Odor (SDS)
Acrylate
Other Hazards
Polymerization may occur from excessive heat, contamination or exposure to direct sunlight .
USA/DOT UN Number
Not Applicable
Optical Properties
ValueUnitsTest Method / Conditions
Color Scalemax. 2.0 GardnerGardnerGardner Color Scale
Shelf Life & Stability
ValueUnitsTest Method / Conditions
Shelf Life0.0 dd
Mechanical Properties
ValueUnitsTest Method / Conditions
Elongation64.0 %%at break, UV cured 125 μ thick films
Tensile Strength15.3 MPaMPaat break, UV cured, approx. 125μ thick films
Physical Properties
ValueUnitsTest Method / Conditions
Density1.11 g/mLg/mLAt 25°C
Glass Transition Temperature (Tg)-19.0 °C°CDynamic Mechanical Analysis (DMA)
Viscosity3600.0-4600.0 mPa.smPa.sAt 60°C
Material Composition
ValueUnitsTest Method / Conditions
Isocyanate Contentmax. 0.2 %%
Oligomer Content100.0 %(W/W)%(W/W)
SDS Physical and Chemical Properties
ValueUnitsTest Method / Conditions
Boiling Point (SDS)min. 100.0 °C°C
Density (SDS)1.13 g/cm³g/cm³
Flash Point (SDS)192.0 °C°CPensky-Martens Closed Cup (PMCC)
Vapor Pressure (SDS)max. 1.33 hPahPaat 20°C
Viscosity (SDS)3300.0-4500.0 mPa.smPa.sat 60°C, highly viscous liquid
Volatile Content (SDS)max. 0.5 %%