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Karl Mayer Group Merges Warp Knitted Textile Manufacturing with 3D printing

February 15, 2023

The Karl Mayer Group has developed a 3D printing system that combines warp knitted textile manufacturing with 3D printing, offering maximum flexibility and efficiency in manufacturing custom products.

The technology allows the direct printing of fabric after it has been manufactured on the warp knitting machine.

The inline printing head can be moved quickly to every necessary manufacturing position, and the camera system and pattern recognition software ensure the highest precision in positioning the printing head on the 2×1 meter printing field.

The machine is particularly suitable for customizing products, and the innovation is expected to be particularly advantageous for the sports, shoes and automotive sectors.

printhead
The Karl Mayer printhead. (Image credit: Karl Mayer Group)

For sports clothing, the new 3D printing system allows the integration of partial reinforcements, kinesio tapes or support areas for muscles, and for stabilizing movement. Shoes can also be designed to be wear-resistant in areas that are under the most stress.

The automotive sector is likely to be particularly interested in Karl Mayer’s 3D printing system because of the few working steps required to integrate reinforcements into door panels, roof liners and seats.

Apart from these conventional uses, future-oriented implementations are also conceivable, such as the integration of switches in textile structures, the use of textiles for control purposes, and protective covers for electronic components.

3D printed warp knitted cloth
3D printed warp knitted cloth. (Image credit: Karl Mayer Group)

Karl Mayer has already tested the new 3D printing table with its development partner, Bielefeld University of Applied Science, for the production of shoe cloths. The prototype was presented at the Techtextil 2022 trade fair in Frankfurt am Main, and the innovation was also highlighted at the 5th Additive Manufacturing Meeting, which was held in November 2022 on the Karl Mayer company premises.

The company is now trying to establish the procedure in practice together with potential users.

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About the author | Phillip Keane
Phillip is an aerospace engineer from UK. He is a graduate of Coventry University (UK), International Space University (France) and Nanyang Technological University (Singapore), where he studied Advanced Manufacturing at the Singapore Centre for 3D Printing.
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