Haptic virtualisation of surfaces: feeling textiles on your phone
The haptic impression of textile surface properties has a decisive influence on its evaluation and ultimately on its acceptance and usability. Many solutions are used to replicate a static contour or shape, e.g. to feel controls on common touch displays. In contrast, this project investigates wheth...
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TU Dresden; Faculty of Mechanical Science and Engineering;Chair of Development and Assembly of Textile Products
2021
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oai:doaj.org-article:5bfc6938e4fe45b6b67ad3e4d923d99b2021-11-08T17:12:34ZHaptic virtualisation of surfaces: feeling textiles on your phone2701-939X10.25367/cdatp.2021.2.p80-90https://doaj.org/article/5bfc6938e4fe45b6b67ad3e4d923d99b2021-07-01T00:00:00Zhttps://journals.qucosa.de/cdatp/article/view/42https://doaj.org/toc/2701-939XThe haptic impression of textile surface properties has a decisive influence on its evaluation and ultimately on its acceptance and usability. Many solutions are used to replicate a static contour or shape, e.g. to feel controls on common touch displays. In contrast, this project investigates whether it is possible to simulate the roughness or friction behaviour of a textile surface using a commercially available mobile device.Annerose BrauneChristopher MartinTung LeTU Dresden; Faculty of Mechanical Science and Engineering;Chair of Development and Assembly of Textile Productsarticlehaptic human machine interfaces, textile surface, roughness, mobile consumer devices, tactile renderingTextile bleaching, dyeing, printing, etc.TP890-933Engineering machinery, tools, and implementsTA213-215ENCommunications in Development and Assembling of Textile Products, Vol 2, Iss 1, Pp 80-90 (2021) |
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DOAJ |
language |
EN |
topic |
haptic human machine interfaces, textile surface, roughness, mobile consumer devices, tactile rendering Textile bleaching, dyeing, printing, etc. TP890-933 Engineering machinery, tools, and implements TA213-215 |
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haptic human machine interfaces, textile surface, roughness, mobile consumer devices, tactile rendering Textile bleaching, dyeing, printing, etc. TP890-933 Engineering machinery, tools, and implements TA213-215 Annerose Braune Christopher Martin Tung Le Haptic virtualisation of surfaces: feeling textiles on your phone |
description |
The haptic impression of textile surface properties has a decisive influence on its evaluation and ultimately on its acceptance and usability. Many solutions are used to replicate a static contour or shape, e.g. to feel controls on common touch displays. In contrast, this project investigates whether it is possible to simulate the roughness or friction behaviour of a textile surface using a commercially available mobile device. |
format |
article |
author |
Annerose Braune Christopher Martin Tung Le |
author_facet |
Annerose Braune Christopher Martin Tung Le |
author_sort |
Annerose Braune |
title |
Haptic virtualisation of surfaces: feeling textiles on your phone |
title_short |
Haptic virtualisation of surfaces: feeling textiles on your phone |
title_full |
Haptic virtualisation of surfaces: feeling textiles on your phone |
title_fullStr |
Haptic virtualisation of surfaces: feeling textiles on your phone |
title_full_unstemmed |
Haptic virtualisation of surfaces: feeling textiles on your phone |
title_sort |
haptic virtualisation of surfaces: feeling textiles on your phone |
publisher |
TU Dresden; Faculty of Mechanical Science and Engineering;Chair of Development and Assembly of Textile Products |
publishDate |
2021 |
url |
https://doaj.org/article/5bfc6938e4fe45b6b67ad3e4d923d99b |
work_keys_str_mv |
AT annerosebraune hapticvirtualisationofsurfacesfeelingtextilesonyourphone AT christophermartin hapticvirtualisationofsurfacesfeelingtextilesonyourphone AT tungle hapticvirtualisationofsurfacesfeelingtextilesonyourphone |
_version_ |
1718441476479778816 |