3D printed components for therapeutic applications

Low friction, light and made to measure

Requirement, challenge and solution

Requirement

  • What was needed: Finger joints for an exoskeleton
  • Manufacturing process: selective laser sintering with SLS powder
  • Requirements: low coefficient of friction, wear-resistant, low weight, precision
  • Material: iglidur® i6
  • Industry: Medical industry
  • Success through collaboration: Fast delivery, cost-effective production of customised functional parts

Challenge

Solution

More information on the application

Structure of the hand exoskeleton and how it works

"The friction between the joints and the leaf springs would have been too high with this material. As a result, we would have lost too much energy when moving the fingers"

Jan Dittli

Researcher at the ETHZ Department of Health Sciences and Technology.

Further information on 3D printing

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White paper 3D printing vs. POM

White paper: igus 3D printing materials vs. POM

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