Innovative force sensor for indoor climbing holds - real-time measurements and data processing, design and validation

(Innovativer Kraftsensor für Klettergriffe in der Halle - Echtzeitmessungen und Datenverarbeitung, Entwurf und Validierung)

In this article, a system to measure the evolution of load in time and space during indoor climbing is described. The system is based on a set of dedicated multiaxial load cells, which measure the load on each hold of an indoor climbing wall. When the climber hangs on a hold, the load signal is read and sent to a digital acquisition and processing system. Sensor design allows for measurement of the force components applied to the climbing holds, regardless of the application point of the force on the hold. Local deformations were measured through strain gauges. Based on the electrical configuration of the strain gauges, the values of the applied forces can be computed, making the contributions to the deformation due to bending moments and torsion negligible. The sensor was designed, assuming a maximum applicable load of 200 kg without plastic deformation. The design process was based on both analytical and finite element method analyses. An experimental calibration and testing campaign was performed to validate the sensor design.
© Copyright 2020 Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology. SAGE Publications. Alle Rechte vorbehalten.

Bibliographische Detailangaben
Schlagworte:
Notationen:Naturwissenschaften und Technik technische Sportarten
Veröffentlicht in:Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology
Sprache:Englisch
Veröffentlicht: 2020
Online-Zugang:https://doi.org/10.1177/1754337120927122
Jahrgang:234
Heft:4
Seiten:298-311
Dokumentenarten:Artikel
Level:hoch