Home /Research /A Polyurethane-based Compliant Element for Upgrading Conventional Servos into Series Elastic Actuators**This work was partially funded by Univ. Federal de Santa Maria, by Ostfalia Univ. of Applied Sciences and by the RoboCup Federation.
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A Polyurethane-based Compliant Element for Upgrading Conventional Servos into Series Elastic Actuators**This work was partially funded by Univ. Federal de Santa Maria, by Ostfalia Univ. of Applied Sciences and by the RoboCup Federation.

Leandro Tomé Martins, Christopher Tatsch, Eduardo Henrique Maciel, Reinhard Gerndt, Rodrigo da Silva Guerra

Year
2015
Citations
8

Abstract

This paper presents a novel compliant spring system designed to be attached to a conventional robotics servo motor, turning it into a series elastic actuator (SEA). The system is composed by only two mechanical parts: a torsional polyurethane spring and a round aluminum support for link attachment. The polyurethane spring, had its design derived from a iterative FEM-based optimization process. A magnetometer based circuit is used to measure angular displacement and communicate it through a RS485 bus protocol.

Keywords

ActuatorSpring (device)Displacement (psychology)RoboticsServomechanismSeries (stratigraphy)Finite element methodSoft roboticsAngular displacementSpring system

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