繊維学部研究紹介2025英語版
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(00〃〃5 ssertselisneT)aPG1208040E = 0.96 TPaSensor Development on Hand ManikinFitting Gloves on the Manikin17Armchair (10,10) Chiral (13,6) Zigzag (17 0)CNT強度: Armchair > ZigzagStrength: Armchair > ZiggzagBreak Strain:破断ひずみ:d = 2.36 ÅHeat Plate (60℃)ProfessorNATSUKI ToshiakiProfessorWAKATSUKI KaoruOutlook for researchNano-composite materials made using CNTcan be made suitable for use in aerospace andsports equipment applications by increasingtheir mechanical properties of attenuationand vibration control. Further research anddevelopment can be expected to lead toexpanded use of CNT properties for numerouspurposes.Outlook for students after graduationGraduates are active in a wide array ofdomains, including at software companies andgovernment agencies in addition to textile,appliance and electrical equipment, andautomotive part manufacturers.Outlook for researchPrinciple of natural phenomena shall be understoodbyengineering.sciencesThroughout the research in our lab, understanding ofscale gap between ideal and fact will be recognized.This will be good experience and basic knowledge tocontribute to research and development for newtechnology.usingvariousOutlook for students after graduationDue to energy conservation and fuel efficiency, manykinds of polymer materials and its application havebeen developed. Safety shall be the first priorityeven if main objective is new material development.Our graduates will always have safety consciousnessin any new technology development.Department of Machinery and RoboticsFunctional Machineryand MechanicsDepartment of Machinery and RoboticsFunctional Machineryand MechanicsAdvanced IndustrialTechnologyprincipalfederalandProfessor Natsuki took his current positionin 2020 after working as a researcher atHitachi Chemical’s Tsukuba Research andDevelopment Center, the National InstituteofScience andTechnology, and the New Energy andDevelopmentIndustrialOrganization. Hisofareasresearch include the creation of compositematerials, composite material engineering,and computational science for the analysisand evaluation of their properties.After completion of Ph.D. at theUniv. of Maryland in the U.S., he hadworked for Nat’l Res. Inst. of Fireand Disaster as a research scientistand afire investigatorbefore joining Shinshu Univ. in 2023.His expertise is thermal and fireitsengineeringprotectionapplication of personal protection.The elastic modulus of CNT is a high elastic modulus of about 1TPa. It is seen that the effect of the nanotube structure on thetensile strength of CNTs.A simply one-step method of binding AgNPs to the surface ofCNTs is developed and evaluated. The nanocomposites can beused to transparent conductive films, including electrochromicglass, and solar panels.PETEvaluation of firefighter clothing by flash fire manikin. Fundamental research on test method against heat and flame will be contributed to international standard (ISO) developmentDevelopment of testing method against heat and flame for firefighting gloves. Design of fabric layering in firefighting gloves will be developed by fabric and by whole glove testOur lab conducts scientific research on (1) understanding firedynamics and firefighters’ working environment, (2) heat transferprocess in firefighters’ personal protection equipment (PPE), (3)development and revision on standard fire tests and thermalperformance requirement of material and PPE and (4) developmentof new firefighter PPE. Finally, research on fire protection formaterials and people is one of our objectives, but our essential goalis to educate firefighters (emergency responders) about betterunderstanding of fundamental of fire risk and physics within PPE fortheir safe operation.I focus on studying the mechanical properties of carbon nanotubes(CNTs), for example elasticity, vibration, and buckling, and using the CNTsto develop high-functionality nanocomposite materials. My lab leveragesthe unique properties of CNT, which cannot be achieved with othermaterials, to create lightweight and highly functional CNT-strengthenedcomposite materials and to utilize them in numerous ways.Nozzleand10Strain, ε(%)1520Whole Glove Test against Heat ExposureAn extraordinary new material: Carbon nanotubes Creating and analyzing high-functionality nano-composite materialsScientific Research on Fire and its Application to Firefighter Safety

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