繊維学部研究紹介英語版2026
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'Nano-Fiber Changes the Industry Structure' 15ProfessorKAWAMURATakashiProfessorKIMIckSooOutlook for researchTodevelopmechatronicsrobots,necessarytodesignsystemsbasedonawiderangeofengineeringknowledgealongwithobservation,understanding,andevaluationofmotion.Iaimtodesigneasy-to-use,functionalhighlymechatronicssystems.Outlook for students after graduationMechatronicsisacomprehensivetechnologyandcombiningmachines,informationcontrol.Graduatescanbeexpectedtofindjobsasmechatronicsengineers,whichareinhighdemandintheworldtoday.Outlook for researchWehavesucceededindevelopingvariousnanoproductssuchashighperformancefilters,waterproofjackets,separators,All-solid-statebatteryelectrolytemembrane,ProtonExchangeMembraneFuelCells,masks,etc.,andalsosucceededindevelopingananofibermassproductionplant.Inthefuture,nanofiberswillbeusedinwiderangeproducts.Outlook for students after graduationInadditiontothetextileindustry,weareactiveinvariousfieldssuchaselectronics,semiconductor,andmachinery.medical,Somestudentsaimtostarttheirownbusinesses.Department of Machinery and RoboticsFunctional Machineryand MechanicsDepartment of Machinery and RoboticsFunctional Machineryand MechanicsProfessorKawamurafirstcametotheFacultyofTextileScienceandTechnologyatShinshuUniversityasanassistantprofessor.Aftersubsequentlyworkingasaseniorassistantprofessorandanassistantprofessor,hetookhiscurrentpositionin2019.In1996,heservedasavisitingresearcherattheUniversityofIllinois.Hisinterestsincludemechatronics,intelligentcontrol,robotscapableoflearningtheskillsoflivingthings,kansei(sensitivity)robotics,andhumandynamics.AfterworkingasaresearcheratOakRidgeNationalLaboratoryinU.S.Aandalecturer,AssociateProfessor,RisingstarProf.,heassumedhiscurrentpositionDistinguished2018.Professorin2022,HismainresearchfieldsareCreationofnanofibers.Theworld'sfirstmassproductionofnanofiberswassuccessful.am working to develop robots capable of competing with human teams in the sport of curling. These robots sense minute changes in the surface of the ice and prepare strategies to play.Robotic mechanisms handle metal sheets (left), turn pages based on the same principles as the human hand (upper right), and flap wings based on a dragonfly (lower right).“Nanofibers”arefiberswithadiameterofseveraltenstoseveralhundredsofnanometers,andhaveuniquepropertiesthatarecompletelydifferentfromconventionalfibers.Bymakingthefibersasthinaspossible,filteringandpurifyingforeignsubstancesthatcouldnotbecollectedsofar,improvingtheperformanceoffuelcellsbyincreasingtheefficiencyofelectricalreactions,highperformancesensors,artificialskin,artificialbloodvessels,cells,Highefficiencyinthemedicalfieldsuchashigh-speedcultureisexpected.Iampursuingresearchintomechatronicsrobotsbasedonmechanicalengineering.Thekeywordinthisendeavoris“skills.”Mylabfocusesonobservingtheskillsoflivingthingsnurturedthroughevolutionandindailylifeandanalyzingthemfromanengineeringstandpointtounderstandtheirnatureandsignificanceforbuildingsystems.Successfully developed nanofiber productsTheworld'sfirstpilot-scalenanofibermassproductionmachinethatwassuccessfullydeveloped(Left)Fabricatednanofibernonwovenfabric(Right)itiselectronics,nanowipers,inMake fibers as thin as possible! Enrich the world with “Nanofibers” Researchingrobotsbasedonmechanismsandbringingtheskillsofhumansandlivingthingstorobots

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