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Formulating elastomer modified epoxy resins for ambient temperature cured construction applications
AbstractHycar© Reactive Liquid Polymers (RLP) are not unfamiliar to epoxy technologists. These functional butadiene-acrylonitrile copolymers and polybutadiene homopolymers serve as effective elastomeric modifiers for formulated epoxy compositions. Numerous epoxy disciplines have benefitted from rubber or elastomer modification technology associated with Hycar Reactive Liquid Polymers. CTBN (carboxyl terminated butadiene-acrylonitrile) is commonly employed by formulators of epoxy adhesives/pre-pregs, making it, perhaps the most visible industry for Hycar Reactive Liquid Polymers. Adhesive properties accompanying RLP modified epoxy systems are well documented(1–5). Peel and low temperature shear strength are often highlighted in both elevated and ambient temperature cured elastomer modified epoxy adhesives which have excellent durability.
Formulating elastomer modified epoxy resins for ambient temperature cured construction applications
AbstractHycar© Reactive Liquid Polymers (RLP) are not unfamiliar to epoxy technologists. These functional butadiene-acrylonitrile copolymers and polybutadiene homopolymers serve as effective elastomeric modifiers for formulated epoxy compositions. Numerous epoxy disciplines have benefitted from rubber or elastomer modification technology associated with Hycar Reactive Liquid Polymers. CTBN (carboxyl terminated butadiene-acrylonitrile) is commonly employed by formulators of epoxy adhesives/pre-pregs, making it, perhaps the most visible industry for Hycar Reactive Liquid Polymers. Adhesive properties accompanying RLP modified epoxy systems are well documented(1–5). Peel and low temperature shear strength are often highlighted in both elevated and ambient temperature cured elastomer modified epoxy adhesives which have excellent durability.
Formulating elastomer modified epoxy resins for ambient temperature cured construction applications
Egan, D.R. (author) / Drake, R.S. (author)
Construction and Building Materials ; 3 ; 208-212
1989-01-01
5 pages
Article (Journal)
Electronic Resource
English
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