Powerful solutions for 3D fiber composites


Manufacturers of trend-setting fabrics for the automotive and construction industries are well advised with multiple warp yarn feeding devices.

Three-dimensional fiber-reinforced composites – woven – have great potential for improving the performance of composite structures. Innovative products like these determine the heartbeat of the economy and the success of various branches of industry.

Particularly in recent years, the textile industry has benefited from a veritable flood of innovations and has demonstrated a high level of creativity and creative power. 

3D fiber-reinforced composites

The automotive and construction industries will become new sales markets for the textile industry due to the afore mentioned three-dimensional fiber-reinforced composites. These fabrics consist of high-performance fibers such as carbon, glass and aramid, which are bonded together in a matrix of polymer material such as epoxy, polyester, etc. Characteristics such as stability and lightness promise these fabrics a future of strong demand – this also applies to multilayer fabrics in this sector.

Three-dimensional fiber-reinforced composites also have the potential to reduce project costs. To produce these fabrics in the quality required by the industry, any different warp yarns must be fed to the weaving machines at the correct tension. This usually requires individual solutions tailored to textile-technical requirements and the advice of experts.

Multiple warp yarn feeding device

Depending on the fabric construction, such fabrics are woven from warp beams or from creels. When using different warp yarns with different weaving in, it can be useful to place a multiple warp yarn feeding device between the creel and the weaving machine.

CREALET’s warp yarn feeding devices are tailor-made and target-oriented innovations that always meet the needs of the customer.

Give us a call! We will be happy to take the time to get to know your needs and requirements and discuss solutions with you.