Record ID | marc_columbia/Columbia-extract-20221130-031.mrc:77664538:4061 |
Source | marc_columbia |
Download Link | /show-records/marc_columbia/Columbia-extract-20221130-031.mrc:77664538:4061?format=raw |
LEADER: 04061cam a2200757Ia 4500
001 15079869
005 20220514231727.0
006 m o d
007 cr cn|||||||||
008 100203s2010 flua ob 001 0 eng d
010 $z 2010002141
035 $a(OCoLC)ocn649914531
035 $a(NNC)15079869
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020 $a9781439818091$q(electronic bk.)
020 $a1439818096$q(electronic bk.)
020 $a1322611726$q(ebk)
020 $a9781322611723$q(ebk)
020 $z9781439818084$q(alk. paper)
020 $a9780429147463$q(e-book : PDF)
020 $a0429147465
020 $a1439818088
020 $a9781439818084
024 7 $a10.1201/EBK1439818084$2doi
035 $a(OCoLC)649914531$z(OCoLC)677989033$z(OCoLC)901281231$z(OCoLC)1071952718$z(OCoLC)1110600028$z(OCoLC)1122504625$z(OCoLC)1135521279$z(OCoLC)1152645927$z(OCoLC)1290042246
037 $a692454$bMIL
050 4 $aTK7872.P54$bC493 2010eb
072 7 $aSCI$x021000$2bisacsh
072 7 $aSCI$x022000$2bisacsh
082 04 $a537/.2446$222
049 $aZCUA
100 1 $aChoi, Seung-Bok.
245 10 $aPiezoelectric actuators :$bcontrol applications of smart materials /$cSeung-Bok Choi, Young-Min Han.
260 $aBoca Raton :$bTaylor & Francis,$c2010.
300 $a1 online resource (xiii, 262 pages) :$billustrations
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
347 $adata file$2rda
504 $aIncludes bibliographical references and index.
505 0 $aChapter 1 Introduction -- chapter 2 Control Strategies -- chapter 3 Vibration Control of Flexible Structure -- chapter 4 4Chapter Vibration Control Using Active Mount -- chapter 5 5Chapter Control of Flexible Robotic Manipulators -- chapter 6 Application to Fine Motion Control System -- chapter 7 7Chapter Application to Hydraulic Control System -- chapter 8 8Chapter Piezoelectric Shunt Technology.
520 $aCurrently, many smart materials exhibit one or multifunctional capabilities that are being effectively exploited in various engineering applications, but these are only a hint of what is possible. Newer classes of smart materials are beginning to display the capacity for self-repair, self-diagnosis, self-multiplication, and self-degradation. Ultimately, what will make them practical and commercially viable are control devices that provide sufficient speed and sensitivity. While there are other candidates, piezoelectric actuators and sensors are proving to be the best choice. <STRONG.
546 $aEnglish.
650 0 $aPiezoelectric devices$xMaterials.
650 0 $aActuators$xMaterials.
650 0 $aSmart materials.
650 0 $aIntelligent control systems.
650 6 $aDispositifs piézoélectriques$xMatériaux.
650 6 $aActionneurs$xMatériaux.
650 6 $aMatériaux intelligents.
650 6 $aCommande intelligente.
650 7 $aSCIENCE$xPhysics$xElectricity.$2bisacsh
650 7 $aSCIENCE$xPhysics$xElectromagnetism.$2bisacsh
650 7 $aIntelligent control systems.$2fast$0(OCoLC)fst00975911
650 7 $aPiezoelectric devices$xMaterials.$2fast$0(OCoLC)fst01063925
650 7 $aSmart materials.$2fast$0(OCoLC)fst01121551
655 0 $aElectronic books.
655 4 $aElectronic books.
700 1 $aHan, Young-Min.
773 0 $tMATERIALSnetBASE
776 08 $iPrint version:$aChoi, Seung-Bok.$tPiezoelectric actuators.$dBoca Raton : Taylor & Francis, 2010$w(DLC) 2010002141
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio15079869$zTaylor & Francis eBooks
852 8 $blweb$hEBOOKS