Release Agents
We offer a wide range of high-performance composite release agents designed to meet the demands of virtually every composite manufacturing process. Whether you are working with carbon fibre, fibreglass, epoxy resin, polyester resin, vinyl ester or advanced composite materials, our experienced technical team can help identify the ideal release solution for your application.
From solvent-based and water-based semi-permanent release agents to specialist internal release systems, our products are engineered to provide consistent demoulding, exceptional surface finishes and improved production efficiency. By reducing mould fouling, minimising downtime and extending tooling life, our release agents help manufacturers achieve reliable, repeatable results across a wide range of composite applications.
Solvent-based semi-permanent release agents provide a high-performance solution for composite moulding applications where consistent release performance and superior surface finishes are essential. Designed to create a durable barrier between the mould and composite material, these release systems offer multiple releases from a single application and are widely used for carbon fibre, fibreglass, epoxy, polyester and other advanced composite manufacturing processes.
Water-based semi-permanent release agents deliver reliable mould release performance while offering a lower solvent alternative for composite manufacturing environments. Ideal for applications where reduced emissions, easier handling and improved operator safety are priorities, these advanced release systems provide excellent part release, surface finish quality and mould protection across a wide range of composite processes.
Internal release agents are specially formulated additives that are incorporated directly into composite resin systems to improve mould release performance from within the material itself. Commonly used in demanding production environments, they help reduce sticking, improve processing efficiency and support consistent demoulding of complex composite components.



