Gesture and force sensing based on dielectric elastomers for intelligent gloves in the digital production

Author:

Gratz-Kelly Sebastian12ORCID,Philippi Daniel2,Fasolt Bettina12,Nalbach Sophie12,Motzki Paul12

Affiliation:

1. Smart Material Systems, Center for Mechatronics and Automation Technology (ZeMA gGmbH) , Saarbrücken , Germany

2. Intelligent Material Systems Lab, Department of Systems Engineering, Department of Materials Science and Engineering , 9379 Saarland University , Saarbrücken , Germany

Abstract

Abstract Due to recent progress in human-machine interaction the development of interfaces ensuring a safe collaboration between handling devices and workers is gaining in importance and impact to the industry field. For an adequate operation, combined sensing and actuation capabilities are sufficient for interaction units. Smart materials like dielectric elastomers (DEs) are predestinated for integrated multi-functional applications. DEs are lightweight, high energy density and highly stretchable transducers suitable for many different operation areas, like movement tracking, force sensing, haptic feedback and sound generation and can be used to develop highly integrated textile-based user interfaces. This paper shows first results on the development of a novel intelligent glove prototype based on DE elements. The main focus of this investigation lies on DE-based integrated joint angle and force measurement units as well on a cost-efficient and slim sensing electronic. By embedding the resulting system in an Industry 4.0 environment, an adaptive assistance tool can be developed. The resulting system can be used to monitor the desired motion of a worker and to respond with a corresponding haptic feedback, which depends on the specific interaction task. This makes the resulting system a novel, portable assistant tool for industrial environments.

Funder

European Union’ EFRE research and innovation program

Publisher

Walter de Gruyter GmbH

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Yield increase of DE actuators using novel repair process;Electroactive Polymer Actuators and Devices (EAPAD) XXVI;2024-05-09

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