Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive

碩士 === 國立清華大學 === 動力機械工程學系 === 93 === The aim of this research is to study the application of electrorheological fluid damper in reducing vibration of an optical-disk drive. Electrorheological fluid is an intelligent material that can change stiffness and damping by varying the electric field. There...

Full description

Bibliographic Details
Main Authors: Lien-Kai Chen, 陳廉凱
Other Authors: 宋震國
Format: Others
Language:zh-TW
Published: 2005
Online Access:http://ndltd.ncl.edu.tw/handle/31859662045968155336
id ndltd-TW-093NTHU5311101
record_format oai_dc
spelling ndltd-TW-093NTHU53111012016-06-06T04:11:37Z http://ndltd.ncl.edu.tw/handle/31859662045968155336 Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive 電流變液隔振墊圈在光碟機減振之應用 Lien-Kai Chen 陳廉凱 碩士 國立清華大學 動力機械工程學系 93 The aim of this research is to study the application of electrorheological fluid damper in reducing vibration of an optical-disk drive. Electrorheological fluid is an intelligent material that can change stiffness and damping by varying the electric field. Therefore, this property is employed to design an active damper to be applied to an optical-disk drive. In this thesis, the viscoelastic theory is utilized to explain dynamic behavior of rubber and electrorheological fluid. In addition, the storage modulus and loss modulus are measured by dynamic experiment and are employed to the analysis of vibrational behavior for an optical-disk drive. Moreover, the residual vibration that is generated by the unbalanced mass during high-speed rotation of the optical-disk drive supported with electrorheological fluid damper is measured. Comparing the experimental results to the theoretical ones, some phenomena are observed and disscussed. 宋震國 Cheng-Kuo Sung 2005 學位論文 ; thesis 83 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立清華大學 === 動力機械工程學系 === 93 === The aim of this research is to study the application of electrorheological fluid damper in reducing vibration of an optical-disk drive. Electrorheological fluid is an intelligent material that can change stiffness and damping by varying the electric field. Therefore, this property is employed to design an active damper to be applied to an optical-disk drive. In this thesis, the viscoelastic theory is utilized to explain dynamic behavior of rubber and electrorheological fluid. In addition, the storage modulus and loss modulus are measured by dynamic experiment and are employed to the analysis of vibrational behavior for an optical-disk drive. Moreover, the residual vibration that is generated by the unbalanced mass during high-speed rotation of the optical-disk drive supported with electrorheological fluid damper is measured. Comparing the experimental results to the theoretical ones, some phenomena are observed and disscussed.
author2 宋震國
author_facet 宋震國
Lien-Kai Chen
陳廉凱
author Lien-Kai Chen
陳廉凱
spellingShingle Lien-Kai Chen
陳廉凱
Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
author_sort Lien-Kai Chen
title Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
title_short Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
title_full Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
title_fullStr Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
title_full_unstemmed Applications of Electrorheological Fluid Damper to Reduce Vibration for Optical Disk Drive
title_sort applications of electrorheological fluid damper to reduce vibration for optical disk drive
publishDate 2005
url http://ndltd.ncl.edu.tw/handle/31859662045968155336
work_keys_str_mv AT lienkaichen applicationsofelectrorheologicalfluiddampertoreducevibrationforopticaldiskdrive
AT chénliánkǎi applicationsofelectrorheologicalfluiddampertoreducevibrationforopticaldiskdrive
AT lienkaichen diànliúbiànyègézhèndiànquānzàiguāngdiéjījiǎnzhènzhīyīngyòng
AT chénliánkǎi diànliúbiànyègézhèndiànquānzàiguāngdiéjījiǎnzhènzhīyīngyòng
_version_ 1718296907808243712