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2016 | OriginalPaper | Buchkapitel

Development of a Tele-Operative Control for the Incremental Tube Forming Process and Its Integration into a Learning Environment

verfasst von : Rickmer Meya, Tobias R. Ortelt, Alessandro Selvaggio, Sami Chatti, Christoph Becker, A. Erman Tekkaya

Erschienen in: Engineering Education 4.0

Verlag: Springer International Publishing

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Abstract

A deficient access to experimental equipment leads to the usage of remote labs to improve engineering education and open experiments for every student location- and time-independent. The usage of a tele-operative controlled industrial bending process in lecture combines theoretical learning contents with practical experiences. Lecturers can make experiments in interaction with the students, who are able to assist in choosing the process values. The chosen and presented bending process is the incremental tube forming process that uses in contrast to many ordinary bending processes targeted the superposition of stresses. By superposing of stresses, in this process for example a tube bending and a tube spinning process, several fundamental process characteristics can be observed and integrated into lectures to visualize the theoretical fundamentals behind. Incremental tube forming combines the tube spinning process, which affects the diameter of the tube all along the tube and creates a compressive stress, and a bending process. The understanding of superposition of stresses and the process phenomena are ambitious, so that experimental experience is very useful. By using a tele-operative control, the experiment is location- and time-independent available for lecturers and students all over the world. They can interact with the process like stopping it, influencing it during the process or laying it up. The possibilities for a usage in learning environments are described and pointed out.

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Literatur
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Zurück zum Zitat C. Becker, G. Quintana, M. Hermes, B. Cavallini, A. E. Tekkaya, Prediction of surface roughness due to spinning in the incremental tube forming process, Production Engineering-Research and Development 7 (2–3), 2013, pp. 153–166CrossRef C. Becker, G. Quintana, M. Hermes, B. Cavallini, A. E. Tekkaya, Prediction of surface roughness due to spinning in the incremental tube forming process, Production Engineering-Research and Development 7 (2–3), 2013, pp. 153–166CrossRef
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Zurück zum Zitat Ortelt, T.R., Sadiki, A., Pleul C., Becker, C., Chatti, S., A. E. Tekkaya, “Development of a Tele-Operative Testing Cell as a Remote Lab for Material Characterization” Proceedings of 2014 International Conference on Interactive Collaborative Learning (ICL), December 2014; Dubai, UAE Ortelt, T.R., Sadiki, A., Pleul C., Becker, C., Chatti, S., A. E. Tekkaya, “Development of a Tele-Operative Testing Cell as a Remote Lab for Material Characterization” Proceedings of 2014 International Conference on Interactive Collaborative Learning (ICL), December 2014; Dubai, UAE
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Metadaten
Titel
Development of a Tele-Operative Control for the Incremental Tube Forming Process and Its Integration into a Learning Environment
verfasst von
Rickmer Meya
Tobias R. Ortelt
Alessandro Selvaggio
Sami Chatti
Christoph Becker
A. Erman Tekkaya
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-46916-4_39