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Investigation of size effect on film type haptic actuator made with cellulose acetate

Identifieur interne : 000073 ( PascalFrancis/Corpus ); précédent : 000072; suivant : 000074

Investigation of size effect on film type haptic actuator made with cellulose acetate

Auteurs : Sang-Youn Kim ; JAEHWAN KIM ; Ki-Baek Kim

Source :

RBID : Pascal:14-0119472

Descripteurs français

English descriptors

Abstract

The most important factor in haptic interaction with hand-held devices is to develop a thin film type actuator which can be easily inserted into the devices and create vibrotactile signals with wide frequency bandwidth. This paper reports a film type vibrotactile actuator which is tiny enough to be embedded into small hand-held devices. The vibration mechanism and experiment results for the suggested vibrotactile actuator are explained. The aim of the actuator is to convey a vibrotactile force greater than a human's vibrotactile threshold with broad frequency bandwidth to users. To achieve the requirement, we fabricate a film type vibrotactile actuator with cellulose acetate. When an AC voltage is applied to the actuator, the cellulose acetate film gets charged and then generates vibration. The suggested vibrotactile actuator is fabricated in two sizes: 50 mm x 25 mm and 25 mm x 25 mm. For each size of actuator, three kinds of actuator are fabricated with different pillar materials to support the cellulose acetate films. An experiment for measuring vibrational amplitude is conducted over a wide frequency range of actuation voltage. It is known that the proposed film type actuator is feasible for haptic application in the small hand-held devices.

Notice en format standard (ISO 2709)

Pour connaître la documentation sur le format Inist Standard.

pA  
A01 01  1    @0 0964-1726
A03   1    @0 Smart mater. struc.
A05       @2 23
A06       @2 4
A08 01  1  ENG  @1 Investigation of size effect on film type haptic actuator made with cellulose acetate
A11 01  1    @1 KIM (Sang-Youn)
A11 02  1    @1 JAEHWAN KIM
A11 03  1    @1 KIM (Ki-Baek)
A14 01      @1 Interaction Laboratory, Advanced Technology Research Center, Korea University of Technology and Education, 1800 Chungjeollo, Byeongcheon-Myeon @2 Cheonan-City 330-708, Chungnam province @3 KOR @Z 1 aut.
A14 02      @1 Center for EAPap Actuator, Department of Mechanical Engineering, INHA University, 253 Younghyun-Dong @2 Nam-Gu, Incheon 402-751 @3 KOR @Z 2 aut. @Z 3 aut.
A20       @2 045016.1-045016.6
A21       @1 2014
A23 01      @0 ENG
A43 01      @1 INIST @2 26248 @5 354000501194530160
A44       @0 0000 @1 © 2014 INIST-CNRS. All rights reserved.
A45       @0 16 ref.
A47 01  1    @0 14-0119472
A60       @1 P
A61       @0 A
A64 01  1    @0 Smart materials and structures
A66 01      @0 GBR
C01 01    ENG  @0 The most important factor in haptic interaction with hand-held devices is to develop a thin film type actuator which can be easily inserted into the devices and create vibrotactile signals with wide frequency bandwidth. This paper reports a film type vibrotactile actuator which is tiny enough to be embedded into small hand-held devices. The vibration mechanism and experiment results for the suggested vibrotactile actuator are explained. The aim of the actuator is to convey a vibrotactile force greater than a human's vibrotactile threshold with broad frequency bandwidth to users. To achieve the requirement, we fabricate a film type vibrotactile actuator with cellulose acetate. When an AC voltage is applied to the actuator, the cellulose acetate film gets charged and then generates vibration. The suggested vibrotactile actuator is fabricated in two sizes: 50 mm x 25 mm and 25 mm x 25 mm. For each size of actuator, three kinds of actuator are fabricated with different pillar materials to support the cellulose acetate films. An experiment for measuring vibrational amplitude is conducted over a wide frequency range of actuation voltage. It is known that the proposed film type actuator is feasible for haptic application in the small hand-held devices.
C02 01  3    @0 001B00G07M
C03 01  3  FRE  @0 Effet dimensionnel @5 02
C03 01  3  ENG  @0 Size effect @5 02
C03 02  3  FRE  @0 Actionneur @5 03
C03 02  3  ENG  @0 Actuators @5 03
C03 03  X  FRE  @0 Large bande @5 04
C03 03  X  ENG  @0 Wide band @5 04
C03 03  X  SPA  @0 Banda ancha @5 04
C03 04  3  FRE  @0 Vibration @5 05
C03 04  3  ENG  @0 Vibrations @5 05
C03 05  X  FRE  @0 Synthèse chimique @5 06
C03 05  X  ENG  @0 Chemical synthesis @5 06
C03 05  X  SPA  @0 Síntesis química @5 06
C03 06  3  FRE  @0 Constante diélectrique @5 07
C03 06  3  ENG  @0 Permittivity @5 07
C03 07  X  FRE  @0 Cellulose acétate @2 NK @5 11
C03 07  X  ENG  @0 Cellulose acetate @2 NK @5 11
C03 07  X  SPA  @0 Celulosa acetato @2 NK @5 11
C03 08  3  FRE  @0 Performance @5 12
C03 08  3  ENG  @0 Performance @5 12
C03 09  3  FRE  @0 Accélération @5 13
C03 09  3  ENG  @0 Acceleration @5 13
C03 10  3  FRE  @0 Couche mince @5 15
C03 10  3  ENG  @0 Thin films @5 15
C03 11  3  FRE  @0 Interface haptique @5 16
C03 11  3  ENG  @0 Haptic interfaces @5 16
C03 12  X  FRE  @0 Signal entrée @5 17
C03 12  X  ENG  @0 Input signal @5 17
C03 12  X  SPA  @0 Señal entrada @5 17
N21       @1 153

Format Inist (serveur)

NO : PASCAL 14-0119472 INIST
ET : Investigation of size effect on film type haptic actuator made with cellulose acetate
AU : KIM (Sang-Youn); JAEHWAN KIM; KIM (Ki-Baek)
AF : Interaction Laboratory, Advanced Technology Research Center, Korea University of Technology and Education, 1800 Chungjeollo, Byeongcheon-Myeon/Cheonan-City 330-708, Chungnam province/Corée, République de (1 aut.); Center for EAPap Actuator, Department of Mechanical Engineering, INHA University, 253 Younghyun-Dong/Nam-Gu, Incheon 402-751/Corée, République de (2 aut., 3 aut.)
DT : Publication en série; Niveau analytique
SO : Smart materials and structures; ISSN 0964-1726; Royaume-Uni; Da. 2014; Vol. 23; No. 4; 045016.1-045016.6; Bibl. 16 ref.
LA : Anglais
EA : The most important factor in haptic interaction with hand-held devices is to develop a thin film type actuator which can be easily inserted into the devices and create vibrotactile signals with wide frequency bandwidth. This paper reports a film type vibrotactile actuator which is tiny enough to be embedded into small hand-held devices. The vibration mechanism and experiment results for the suggested vibrotactile actuator are explained. The aim of the actuator is to convey a vibrotactile force greater than a human's vibrotactile threshold with broad frequency bandwidth to users. To achieve the requirement, we fabricate a film type vibrotactile actuator with cellulose acetate. When an AC voltage is applied to the actuator, the cellulose acetate film gets charged and then generates vibration. The suggested vibrotactile actuator is fabricated in two sizes: 50 mm x 25 mm and 25 mm x 25 mm. For each size of actuator, three kinds of actuator are fabricated with different pillar materials to support the cellulose acetate films. An experiment for measuring vibrational amplitude is conducted over a wide frequency range of actuation voltage. It is known that the proposed film type actuator is feasible for haptic application in the small hand-held devices.
CC : 001B00G07M
FD : Effet dimensionnel; Actionneur; Large bande; Vibration; Synthèse chimique; Constante diélectrique; Cellulose acétate; Performance; Accélération; Couche mince; Interface haptique; Signal entrée
ED : Size effect; Actuators; Wide band; Vibrations; Chemical synthesis; Permittivity; Cellulose acetate; Performance; Acceleration; Thin films; Haptic interfaces; Input signal
SD : Banda ancha; Síntesis química; Celulosa acetato; Señal entrada
LO : INIST-26248.354000501194530160
ID : 14-0119472

Links to Exploration step

Pascal:14-0119472

Le document en format XML

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<div type="abstract" xml:lang="en">The most important factor in haptic interaction with hand-held devices is to develop a thin film type actuator which can be easily inserted into the devices and create vibrotactile signals with wide frequency bandwidth. This paper reports a film type vibrotactile actuator which is tiny enough to be embedded into small hand-held devices. The vibration mechanism and experiment results for the suggested vibrotactile actuator are explained. The aim of the actuator is to convey a vibrotactile force greater than a human's vibrotactile threshold with broad frequency bandwidth to users. To achieve the requirement, we fabricate a film type vibrotactile actuator with cellulose acetate. When an AC voltage is applied to the actuator, the cellulose acetate film gets charged and then generates vibration. The suggested vibrotactile actuator is fabricated in two sizes: 50 mm x 25 mm and 25 mm x 25 mm. For each size of actuator, three kinds of actuator are fabricated with different pillar materials to support the cellulose acetate films. An experiment for measuring vibrational amplitude is conducted over a wide frequency range of actuation voltage. It is known that the proposed film type actuator is feasible for haptic application in the small hand-held devices.</div>
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<ET>Investigation of size effect on film type haptic actuator made with cellulose acetate</ET>
<AU>KIM (Sang-Youn); JAEHWAN KIM; KIM (Ki-Baek)</AU>
<AF>Interaction Laboratory, Advanced Technology Research Center, Korea University of Technology and Education, 1800 Chungjeollo, Byeongcheon-Myeon/Cheonan-City 330-708, Chungnam province/Corée, République de (1 aut.); Center for EAPap Actuator, Department of Mechanical Engineering, INHA University, 253 Younghyun-Dong/Nam-Gu, Incheon 402-751/Corée, République de (2 aut., 3 aut.)</AF>
<DT>Publication en série; Niveau analytique</DT>
<SO>Smart materials and structures; ISSN 0964-1726; Royaume-Uni; Da. 2014; Vol. 23; No. 4; 045016.1-045016.6; Bibl. 16 ref.</SO>
<LA>Anglais</LA>
<EA>The most important factor in haptic interaction with hand-held devices is to develop a thin film type actuator which can be easily inserted into the devices and create vibrotactile signals with wide frequency bandwidth. This paper reports a film type vibrotactile actuator which is tiny enough to be embedded into small hand-held devices. The vibration mechanism and experiment results for the suggested vibrotactile actuator are explained. The aim of the actuator is to convey a vibrotactile force greater than a human's vibrotactile threshold with broad frequency bandwidth to users. To achieve the requirement, we fabricate a film type vibrotactile actuator with cellulose acetate. When an AC voltage is applied to the actuator, the cellulose acetate film gets charged and then generates vibration. The suggested vibrotactile actuator is fabricated in two sizes: 50 mm x 25 mm and 25 mm x 25 mm. For each size of actuator, three kinds of actuator are fabricated with different pillar materials to support the cellulose acetate films. An experiment for measuring vibrational amplitude is conducted over a wide frequency range of actuation voltage. It is known that the proposed film type actuator is feasible for haptic application in the small hand-held devices.</EA>
<CC>001B00G07M</CC>
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<SD>Banda ancha; Síntesis química; Celulosa acetato; Señal entrada</SD>
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<ID>14-0119472</ID>
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