Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration

Tetsuo Inoue, Syuhei Kurokawa

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Fishing spinning reels use a pair of face gear; when the handle of the reel is rotated, vibration is generated by the engagement of the gear pair. An angler feels the gear vibration as a sensation in the fishing reel. In this study, a new method is proposed to improve the fishing reel sensation. In this method, several grooves are added on the tooth flank of the face gear. The optimal groove width and number of grooves are determined by investigating the influence the grooves have on vibration. In addition, by introducing the concept of the tactile-response delay time, the authors elucidate the reason that the vibration sensation can be improved by specifying the number of grooves.

Original languageEnglish
Title of host publicationAdvances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design
EditorsShuichi Fukuda
PublisherSpringer Verlag
Pages154-164
Number of pages11
ISBN (Print)9783030204402
DOIs
Publication statusPublished - Jan 1 2020
EventAHFE International Conference on Affective and Pleasurable Design, 2019 - Washington D.C., United States
Duration: Jul 24 2019Jul 28 2019

Publication series

NameAdvances in Intelligent Systems and Computing
Volume952
ISSN (Print)2194-5357

Conference

ConferenceAHFE International Conference on Affective and Pleasurable Design, 2019
CountryUnited States
CityWashington D.C.
Period7/24/197/28/19

Fingerprint

Gears
Reels
Gear teeth
Time delay

All Science Journal Classification (ASJC) codes

  • Control and Systems Engineering
  • Computer Science(all)

Cite this

Inoue, T., & Kurokawa, S. (2020). Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration. In S. Fukuda (Ed.), Advances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design (pp. 154-164). (Advances in Intelligent Systems and Computing; Vol. 952). Springer Verlag. https://doi.org/10.1007/978-3-030-20441-9_17

Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration. / Inoue, Tetsuo; Kurokawa, Syuhei.

Advances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design. ed. / Shuichi Fukuda. Springer Verlag, 2020. p. 154-164 (Advances in Intelligent Systems and Computing; Vol. 952).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Inoue, T & Kurokawa, S 2020, Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration. in S Fukuda (ed.), Advances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design. Advances in Intelligent Systems and Computing, vol. 952, Springer Verlag, pp. 154-164, AHFE International Conference on Affective and Pleasurable Design, 2019, Washington D.C., United States, 7/24/19. https://doi.org/10.1007/978-3-030-20441-9_17
Inoue T, Kurokawa S. Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration. In Fukuda S, editor, Advances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design. Springer Verlag. 2020. p. 154-164. (Advances in Intelligent Systems and Computing). https://doi.org/10.1007/978-3-030-20441-9_17
Inoue, Tetsuo ; Kurokawa, Syuhei. / Evaluation of Feel of Fishing Reel by Elucidating the Relationship Between Tactile Sensation and Gear Vibration. Advances in Affective and Pleasurable Design - Proceedings of the AHFE 2019 International Conference on Affective and Pleasurable Design. editor / Shuichi Fukuda. Springer Verlag, 2020. pp. 154-164 (Advances in Intelligent Systems and Computing).
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