Sedimentation upon different carrier liquid in giant electrorheological fluid and its application

When giant electrorheological (GER) fluid is settled after some time, particles can precipitate out of the oil in a multistep process that involves the formation of larger particles, the aggregation of colloids, and eventual sedimentation. Colloidal stability in giant electrorheological (GER) fluid...

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Main Authors: Yaying eHong, Weijia eWen
Format: Article
Language:English
Published: Frontiers Media S.A. 2014-10-01
Series:Frontiers in Materials
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fmats.2014.00024/full
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spelling doaj-c846fd66b74f4bc0950a9ff67f4816022020-11-24T20:55:12ZengFrontiers Media S.A.Frontiers in Materials2296-80162014-10-01110.3389/fmats.2014.00024120240Sedimentation upon different carrier liquid in giant electrorheological fluid and its applicationYaying eHong0Weijia eWen1Hong Kong University of Science and TechnologyHong Kong University of Science and TechnologyWhen giant electrorheological (GER) fluid is settled after some time, particles can precipitate out of the oil in a multistep process that involves the formation of larger particles, the aggregation of colloids, and eventual sedimentation. Colloidal stability in giant electrorheological (GER) fluid can influence the GER performance and the fluid flow steadiness. We investigated the sedimentation effect of the GER particles suspended in various carrier liquid. Different from the existing electrorheological (ER) fluids, GER particles consisting of oxalate core with urea coating are found oil synergistic. The sedimentation effect of the particles suspended in oils from the family of synthetic oil and mineral oil were checked by direct observation. The rheological behavior of the GER fluid upon electric field application was also investigated. These experiments showed that stable colloidal suspension and good GER effect can be achieved coherently by favorable particle-oil interaction. The resultant high yield stress and low sedimentation rate achieved due to the instrumental linking of hydrogen bond is showed in the hydrogenated silicone oil carrier liquid. With the anti-sedimentation characteristic upon the new carrier oil, hydrogenated silicone oil-GER fluid, we investigated their GER effect in a modified mono tube damper and the experimental result showed wide controllability range. Our investigations may broaden engineering applications.http://journal.frontiersin.org/Journal/10.3389/fmats.2014.00024/fullsmart materialsSedimentationgiant electrorheologicalGER dampercarrier liquid
collection DOAJ
language English
format Article
sources DOAJ
author Yaying eHong
Weijia eWen
spellingShingle Yaying eHong
Weijia eWen
Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
Frontiers in Materials
smart materials
Sedimentation
giant electrorheological
GER damper
carrier liquid
author_facet Yaying eHong
Weijia eWen
author_sort Yaying eHong
title Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
title_short Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
title_full Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
title_fullStr Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
title_full_unstemmed Sedimentation upon different carrier liquid in giant electrorheological fluid and its application
title_sort sedimentation upon different carrier liquid in giant electrorheological fluid and its application
publisher Frontiers Media S.A.
series Frontiers in Materials
issn 2296-8016
publishDate 2014-10-01
description When giant electrorheological (GER) fluid is settled after some time, particles can precipitate out of the oil in a multistep process that involves the formation of larger particles, the aggregation of colloids, and eventual sedimentation. Colloidal stability in giant electrorheological (GER) fluid can influence the GER performance and the fluid flow steadiness. We investigated the sedimentation effect of the GER particles suspended in various carrier liquid. Different from the existing electrorheological (ER) fluids, GER particles consisting of oxalate core with urea coating are found oil synergistic. The sedimentation effect of the particles suspended in oils from the family of synthetic oil and mineral oil were checked by direct observation. The rheological behavior of the GER fluid upon electric field application was also investigated. These experiments showed that stable colloidal suspension and good GER effect can be achieved coherently by favorable particle-oil interaction. The resultant high yield stress and low sedimentation rate achieved due to the instrumental linking of hydrogen bond is showed in the hydrogenated silicone oil carrier liquid. With the anti-sedimentation characteristic upon the new carrier oil, hydrogenated silicone oil-GER fluid, we investigated their GER effect in a modified mono tube damper and the experimental result showed wide controllability range. Our investigations may broaden engineering applications.
topic smart materials
Sedimentation
giant electrorheological
GER damper
carrier liquid
url http://journal.frontiersin.org/Journal/10.3389/fmats.2014.00024/full
work_keys_str_mv AT yayingehong sedimentationupondifferentcarrierliquidingiantelectrorheologicalfluidanditsapplication
AT weijiaewen sedimentationupondifferentcarrierliquidingiantelectrorheologicalfluidanditsapplication
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