Rubber Adhesion Promoters

Quick Access

Cobalt carboxylates serve as well-known adhesion promoters, primarily employed within the tire sector to improve and maintain the bond between rubber and steel cord in steel-belted radial tires.

Our cobalt carboxylates enhance the crosslink density of rubber, bolster crystalline strength, structure the copper sulfide layer, and inhibit dezincification.

Products boasting higher metal contents, potentially modified with boron, exhibit free-flowing characteristics with softening points comfortably below banbury temperatures, facilitating easy integration into wire coat compounds.

Presently, Cobalt Neodecanoates, Cobalt Stearate and Cobalt Boro-Neodecanoates dominate the global market, with these product forms surpassing all others in the cobalt industry.

Products Chemical Name Cobalt (%) Form
EGEBond®1893 Cobalt Stearate 9,3 Pastilles
EGEBond®1895 Cobalt Stearate 9,5 Pastilles
EGEBond®10205L Cobalt Neodecanoate 20,5 Pastilles
EGEBond®10225C Cobalt Neodecanoate 22,5 Pastilles
EGEBond®10225P Cobalt Borodecanoate 22,5 Block (Paste)
EGEBond®10142P Cobalt Borodecanoate 14,2 Paste
EGEBond®8105 Cobalt Octoate 10,5 Liquid

Ege Kimya stands as a leading provider of cobalt-based adhesive promoters for major players in the tire and rubber industries, offering a diverse array of solutions tailored to your specific requirements.

Storage

It should be stored in cool and dry places below 30°C. Since it is a product that oxidizes easily, packages should not be open during storage. Shelf life is 12 months from the production date.

Safety and Information

Please contact [email protected] for MSDS requests and detailed information

We Develop Sustainable and Innovative Solutions for the Future

At Ege Kimya, sustainability is at the heart of our business. We prioritize our environmental and social responsibilities at every stage, from product sourcing to production. By embracing ethical and transparent principles in our supply chain, we are dedicated to creating a more sustainable and livable future.