Serveur d'exploration sur les dispositifs haptiques

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Haptic device development based on electro static force of cellulose Electro Active Paper

Identifieur interne : 003394 ( Main/Merge ); précédent : 003393; suivant : 003395

Haptic device development based on electro static force of cellulose Electro Active Paper

Auteurs : Gyu-Young Yun [Corée du Sud] ; Sang-Youn Kim [Corée du Sud] ; Sang-Dong Jang [Corée du Sud] ; Dong-Gu Kim [Corée du Sud] ; Jaehwan Kim [Corée du Sud]

Source :

RBID : Pascal:11-0410013

Descripteurs français

English descriptors

Abstract

Haptic is one of well-considered device which is suitable for demanding virtual reality applications such as medical equipment, mobile devices, the online marketing and so on. Nowadays, many of concepts for haptic devices have been suggested to meet the demand of industries. Cellulose has received much attention as an emerging smart material, named as electro-active paper (EAPap). The EAPap is attractive for mobile haptic devices due to its unique characteristics in terms of low actuation power, suitability for thin devices and transparency. In this paper, we suggest a new concept of haptic actuator with the use of cellulose EAPap. Its performance is evaluated depending on various actuation conditions. As a result, cellulose electrostatic force actuator shows a large output displacement and fast response, which is suitable for mobile haptic devices.

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Pascal:11-0410013

Le document en format XML

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<div type="abstract" xml:lang="en">Haptic is one of well-considered device which is suitable for demanding virtual reality applications such as medical equipment, mobile devices, the online marketing and so on. Nowadays, many of concepts for haptic devices have been suggested to meet the demand of industries. Cellulose has received much attention as an emerging smart material, named as electro-active paper (EAPap). The EAPap is attractive for mobile haptic devices due to its unique characteristics in terms of low actuation power, suitability for thin devices and transparency. In this paper, we suggest a new concept of haptic actuator with the use of cellulose EAPap. Its performance is evaluated depending on various actuation conditions. As a result, cellulose electrostatic force actuator shows a large output displacement and fast response, which is suitable for mobile haptic devices.</div>
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