At the AMPP Annual Conference + Expo 2026, Michael Terralavoro, Account Manager at Neville Chemical Company, shared the company's vision on the development of biohybrid resins and other advanced resins, as well as their impact on coating performance. During the interview, the spokesperson explained how the company adapts its solutions to the specific needs of each formulator, integrating innovation and technical knowledge into every development.
In this context, Neville Chemical Company reinforces its position as a specialized manufacturer of hydrocarbon resins, with a consolidated track record in sectors such as coatings, adhesives, inks, and rubber. Their focus is on offering materials that meet increasingly complex technical demands.
Firstly, one of the pillars of Neville's strategy is the ability to adjust the properties of its resins according to the final application.
Variables such as aromaticity level, softening point, and viscosity are crucial for coating performance.
Terralavoro explained.
This approach allows for optimizing important aspects such as durability, adhesion, and system stability. It also enables formulators to develop more precise solutions for industrial environments where operating conditions can be particularly demanding.
Thus, customization becomes a differentiating element within the coatings market, where universal solutions do not exist, and each application requires fine-tuning of raw materials.
On the other hand, innovation plays a central role in the evolution of the sector. In this regard, biohybrid resins represent one of the main development lines for Neville Chemical Company.
According to the interviewee, the company is working on creating new formulations that allow for replacing substances with potential toxicological concerns, such as nonylphenol. These solutions aim to maintain technical performance while reducing the impact associated with certain traditional components.
Thus, biohybrid resins are positioned as a viable alternative for manufacturers who need to comply with stricter regulations without compromising the quality of the final product. This advancement responds to a growing market demand, where chemical safety and performance must progress in parallel.

Regarding specific applications, Terralavoro highlighted the role of epoxy modifiers developed by Neville. These materials significantly improve critical properties in coatings.
Among the most relevant benefits are increased chemical resistance and improved flexibility, essential factors in applications such as industrial floor coatings. These solutions can also act as accelerators in epoxy systems, optimizing curing times and facilitating field application.
Thanks to these characteristics, the resins developed by the company find use in environments where technical demands are high, and material reliability is crucial to ensure long-term performance.
In parallel, the evolution of Neville Chemical Company is closely linked to its commitment to research and development. Founded in 1925 in Pittsburgh, the company has built a solid reputation in the manufacture of hydrocarbon resins, relying on a collaborative approach with its customers.
Throughout its history, the company has developed materials that improve the performance of industrial products in various sectors. This journey has allowed it to consolidate technical capabilities and adapt to regulatory and market changes.
Likewise, its focus on tailor-made solutions reinforces its ability to respond to specific challenges, integrating technical knowledge and product development into each project.
Finally, the interview highlights a transforming sector, where material innovation is key to facing new challenges. Biohybrid resins, along with property customization and performance improvement, mark a clear direction for the coatings industry.
In this scenario, companies like Neville Chemical Company continue to develop solutions that combine efficiency, safety, and adaptation to market needs, consolidating their role in the evolution of industrial materials.
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Source: Inspenet.