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February 6, 2026Journal of Manufacturing and Materials Processing0 citationsOpen Access

Stiffness Enhancement by Means of Situational Coupling of Two Collaborative Robots

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EUE. UhlmannMFMarie-Noëlle FielersTPThomas Pache

Key Points

  • The aim is to enhance the stiffness of collaborative robots using situational coupling techniques to improve their performance in precision tasks.
  • Analyzed kinematic limitations of coupled collaborative robots
  • Modeled stiffness using finite element method
  • Conducted experimental stiffness measurements on a single collaborative robot to validate the model
  • Quantified stiffness enhancement achieved through coupling
  • The proposed coupling method can enhance stiffness up to 37.19 times compared to a single collaborative robot

Abstract

While collaborative robots are designed to enable flexible and safe human–robot interactions, their comparatively low structural stiffness poses a challenge for high-precision machining and heavy-assembly tasks. Addressing this limitation is essential for enhancing their performance and improving their overall efficiency in manufacturing processes. This paper proposes an approach for enhancing the stiffness by means of situational coupling of two collaborative robots. Therefore, an analysis is conducted to determine the kinematic limitations of coupled collaborative robots. The stiffness of coupled collaborative robots is then modeled using the finite element method. Furthermore, experimental stiffness measurements of a single collaborative robot are conducted to establish a quantitative reference, which is both to validate the model and to quantify the stiffness enhancement achieved through coupling. On the basis of the combined experimental and numerical results, it is demonstrated that the approach of coupling has the potential to enhance stiffness by up to 37.19 times in comparison with a solitary collaborative robot.

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Cite This Study

Uhlmann et al. (2026) studied this question.

synapsesocial.com/papers/698585cb8f7c464f2300980chttps://doi.org/10.3390/jmmp10020054
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