Hypro™ Reactive Liquid Polymers

Global industry demands greater product performance. Today’s products must be stronger, tougher and more impact resistant. Expand the capabilities of your products with proven technology and performance from Emerald Performance Materials. HyproTM Reactive Polymers (RLP) modify thermoset resins and deliver the value and versatility needed to succeed in a highly competitive global market.

HyproTM RLP products are 100% solids liquid rubbers used to improve the toughness or flexibility of thermoset resin systems such as epoxies, vinyl esters, unsaturated polyesters, phenolics, and acrylics. Commonly used in structural adhesives, composites and coatings, HyproTM RLP products enhance performance capabilities and open new opportunities – every day.

The secret to the success of the HyproTM RLP technology is innovative chemistry. HyproTM RLP products are butadiene acrylonitrile copolymers or butadiene homopolymers with Tgs as low as -77°C. The end group functionality is the key to improved and more controlled performance. HyproTM RLP products feature carboxyl, amine, methacrylated vinyl and epoxy reactive end groups with a variety of acrylonitrile contents. With selective FDA compatible versions, the possibilities are endless.

HyproTM RLP products provide exciting and profitable results for your end products. The strength of the product line is its versatility.  HyproTM RLP products can be used in either one or two part systems and in conjunction with a wide range of curative packages. Incorporation can be through direct addition, pre-reacts (adducts), or through the curative system depending upon the formulating needs or available equipment. Combined with thermoset resins, HyproTM RLP products are effective modifiers for your particular end use.

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Improve your products and explore new opportunities with HyproTM Reactive Liquid Polymers. Find out more by contacting your local Emerald Performance Materials Sales Representative or contact our Customer Service Group 888.889.9150 for more information.

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