Products

Huntsman

Matching Product Technologies (6)

45 Products found on Huntsman

ARADUR® 2975 banner
Huntsman company logo
HuntsmanARADUR® 2975
  • Product Functions:Hardener
  • Chemical Family:Cycloaliphatic Amine, Polyamines
  • Product End Uses:2K (2 component) Coating, Epoxy Coating, Epoxy Mortars, Floor Coatings, Self-Leveling Floors, Solventless & High Solids Coating
  • Material Compatibility:Epoxy (EP) Polymers
  • Product Features:Acid Resistant, Alkali Resistance, Blush-free, Color Retention, Excellent Film Appearance, Exudation Resistant, Light Color, Low Viscosity, Solvent Resistance, Water Resistance

ARADUR® 2975 Hardener is a modified cycloaliphatic polyamine that is used as a low viscosity, light color, and non-blushing hardener for the formulation of ambient cure two-component epoxy floorings and coatings. ARADUR® 2975 Hardener can be formulated with modified or unmodified bisphenol A and bisphenol F-based liquid epoxy resins.

 

The information, specifications, and materials provided with this product are for general informational purposes only and are subject to change without notice. The product is provided “as is” without any warranties, express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, or non-infringement. Users are responsible for ensuring the product is suitable for their intended application and for following all applicable safety guidelines and instructions.

The information, specifications, and materials accessible here may not reflect the most current version. Please use the Request a Document feature for the most current product documentation available.

ARALDITE® ECN 1273 banner
Huntsman company logo
HuntsmanARALDITE® ECN 1273
  • Chemical Family:Phenol & Cresol Epoxy Resins (Novolac)
  • Product Functions:Binder, Resin, Resins, Binders & Matrix Materials
  • Product End Uses:Electronics, Laminates, Surface Coating, Tooling Systems
  • Processing & Application Methods:Casting, Coating, Filament Winding, Fluid Bed Coating, Lamination, Vacuum Bagging
  • Glass Transition Temperature (Tg):200.0 °C
  • Product Features:Chemical Resistance, Excellent Thermal Properties, Good Solvent Resistance, Improved Mechanical Resistance, Solvent Resistance, Thermal Resistance

ARALDITE® ECN 1273 is a polyepoxide resin produced by reacting epichlorohydrin with an ortho-cresol formaldehyde novolac. The molecular weight of the novolac controls the resin’s molecular weight and functionality, which ranges from 2.5 to 5.5 reactive groups per molecule. Unlike conventional bisphenol-A based epoxy resins, this polyepoxide offers multiple reactive sites, enhancing crosslinking density and performance.

 

The information, specifications, and materials provided with this product are for general informational purposes only and are subject to change without notice. The product is provided “as is” without any warranties, express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, or non-infringement. Users are responsible for ensuring the product is suitable for their intended application and for following all applicable safety guidelines and instructions.

The information, specifications, and materials accessible here may not reflect the most current version. Please use the Request a Document feature for the most current product documentation available.

ARALDITE® ECN 1280 banner
Huntsman company logo
HuntsmanARALDITE® ECN 1280
  • Chemical Family:Phenol & Cresol Epoxy Resins (Novolac)
  • Product End Uses:Aerospace Applications, Powder Coating, Rocket, Space Shuttle, Spacecraft, Tooling Systems
  • Processing & Application Methods:Casting, Coating, Filament Winding, Fluid Bed Coating, Lamination
  • Glass Transition Temperature (Tg):200.0 °C
  • Product Features:Chemical Resistance, Excellent Thermal Properties, Good Solvent Resistance, Improved Mechanical Resistance, Solvent Resistance, Thermal Resistance

ARALDITE® ECN 1280 is a polyepoxide resin produced by reacting epichlorohydrin with an ortho-cresol formaldehyde novolac. The novolac’s molecular weight determines the resin’s molecular weight and functionality, which ranges from 2.5 to 5.5 reactive groups per molecule. Compared to conventional bisphenol-A based epoxy resins, this polyepoxide offers multiple reactive sites, resulting in enhanced crosslinking and improved material properties.

 

The information, specifications, and materials provided with this product are for general informational purposes only and are subject to change without notice. The product is provided “as is” without any warranties, express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, or non-infringement. Users are responsible for ensuring the product is suitable for their intended application and for following all applicable safety guidelines and instructions.

The information, specifications, and materials accessible here may not reflect the most current version. Please use the Request a Document feature for the most current product documentation available.

ARALDITE® ECN 9511 banner
Huntsman company logo
HuntsmanARALDITE® ECN 9511
  • Chemical Family:Phenol & Cresol Epoxy Resins (Novolac)
  • Product End Uses:Tooling Systems
  • Processing & Application Methods:Casting, Coating, Filament Winding, Fluid Bed Coating, Lamination
  • Glass Transition Temperature (Tg):200.0 °C
  • Product Features:Chemical Resistance, Excellent Thermal Properties, Good Solvent Resistance, Improved Mechanical Resistance, Solvent Resistance, Thermal Resistance

ARALDITE® ECN 9511 is a polyepoxide resin synthesized by reacting epichlorohydrin with an ortho-cresol formaldehyde novolac. The molecular weight of the novolac influences the resin’s molecular weight and functionality, which typically ranges from 2.5 to 5.5 reactive groups per molecule. Unlike conventional bisphenol-A based epoxy resins, this polyepoxide contains multiple reactive sites, enabling higher crosslink density and enhanced performance.

 

The information, specifications, and materials provided with this product are for general informational purposes only and are subject to change without notice. The product is provided “as is” without any warranties, express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, or non-infringement. Users are responsible for ensuring the product is suitable for their intended application and for following all applicable safety guidelines and instructions.

The information, specifications, and materials accessible here may not reflect the most current version. Please use the Request a Document feature for the most current product documentation available.

ARALDITE® EPN 1180 banner
Huntsman company logo
HuntsmanARALDITE® EPN 1180
  • Chemical Family:Glycidyl Ethers
  • Product End Uses:2K (2 component) Coating, Coil Coating, Floor Coatings, Pipe Coating, Pre-pregs, Primers, Tank Linings, Waterborne Coating
  • Material Compatibility:Polyamine Polymers
  • Product Features:Chemical Resistance, Corrosion Resistance, Heat Resistance, High Crosslinking, High Performance, High Temperature Resistance, Solvent Resistance

ARALDITE® EPN 1180 epoxy phenol novolac resins contain more than two epoxy groups per molecule, classifying them as multifunctional epoxy resins. Due to the increased epoxy functionality, EPN resins provide a high cross-link density when properly cured. Systems based on ARALDITE® EPN 1180 epoxy phenol novolac resins offer better chemical and high-temperature resistance compared to those based on standard bisphenol A epoxy resins. EPN resins are recommended for high-performance applications requiring good chemical and solvent resistance. When combined with suitable curing agents (such as polyamines, novolacs, and anhydrides), they can be used as the sole resin or blended with bisphenol A and F epoxy resins to enhance the performance of the latter. EPN resins can be used in two-component, room-temperature cure, forced-cure, or heat-cure systems. Solvent-containing, high-solids, solvent-free, or waterborne coatings can be formulated. The heat-curable systems deliver ultimate performance (chemical and thermal resistance) due to more complete reactions with curing agents at higher temperatures, overcoming the stearic hindrance of multifunctional epoxy resins.

 

The information, specifications, and materials provided with this product are for general informational purposes only and are subject to change without notice. The product is provided “as is” without any warranties, express or implied, including but not limited to warranties of merchantability, fitness for a particular purpose, or non-infringement. Users are responsible for ensuring the product is suitable for their intended application and for following all applicable safety guidelines and instructions.

The information, specifications, and materials accessible here may not reflect the most current version. Please use the Request a Document feature for the most current product documentation available.

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