Carbon Fiber EOAT

Our modular end-of-arm tooling, assembled from either aluminium or steel, provides a simple and easy-to-use solution for many injection moulding applications. However, for more complex applications that require faster cycle times or the handling of larger, heavier parts, a reduction in tool weight may be necessary.

This is where carbon fiber comes in as an excellent alternative that can not only reduce tool weight but also improve overall performance by minimising vibrations and reducing the load on robots. With our expertise in carbon fiber design, we can help you optimise your tooling for maximum efficiency and productivity.

Don’t hesitate to contact us to discuss how our carbon fiber solutions can benefit your application.

Our modular end-of-arm tooling, assembled from either aluminium or steel, provides a simple and easy-to-use solution for many injection moulding applications.

Reduced Weight

Carbon fiber is lighter than aluminum and steel, resulting in reduced robot loads, faster cycle times, and higher efficiency.

Increased Stiffness

Carbon fiber is stiffer than aluminum and steel, which improves the precision and repeatability of the tooling.

Improved Vibration Damping

Carbon fiber is better at absorbing vibrations than metal, which helps to reduce machine noise and increase part quality.

Corrosion Resistance

Carbon fiber is immune to corrosion, which makes it an ideal material for use in harsh environments.

High Strength-to-Weight Ratio

Carbon fiber has an excellent strength-to-weight ratio, which makes it possible to design lighter and stronger EOATs.

Tailored properties

The properties of carbon fiber can be tailored to specific applications by adjusting the manufacturing process, resulting in bespoke EOAT solutions.

The use of carbon fiber in End-of-Arm Tooling can lead to significant improvements in cycle time, part quality, and efficiency, making it an attractive option for manufacturers looking to optimise their processes.