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2011-0922-01
Energy
posted:2014/05/21

Development of energy control techniques for the realization of a smart grid

HAYASHI, Yasuhiro Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Electrical Engineering and Bioscience)
Advanced methodologies will be developed through computer simulations and next-generation smart grid simulations, in order to enable total design of a suitable next-generation electrical energy supply configuration by which both of the above can be achieved continuously.
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1123
Energy
posted:2014/04/03

An output restriction avoidance method for multiple-unit-connected photovoltaic power generation systems and the equipment necessary for the method

HAYASHI, Yasuhiro Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Electrical Engineering and Bioscience)
Photovoltaic power generation systems are able to correct inequalities in the volume of output restrictions between consumers (private homes) simply by adding functions to the existing equipment in multiple-unit-connected distribution systems.The systems measure the terminal v...
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2016-1024-05
Nanotechnology / Materials
posted:2016/10/24

Development of Biosensing Technology for Food Safety

HIDESHIMA, Sho Junior Researcher (Research Council (Research Organization) Institute for Nanoscience & Nanotechnology) (retired)
collaborative researchers:OSAKA, Tetsuya Senior Research Professor (retired)
● Semiconductor-based biosensors can detect a small amount of target molecules in foods.● We have developed a biosensing technology to determine the presence of anaphylactogenic food allergens. 
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2012-0619-01
Environment
posted:2014/05/21

A latent heat storage system

HIRASAWA, Izumi Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
This project is for the creation of a latent heat storage system using thermal energy (heat in particular) set in motion along with transfers between liquid and solid states.
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2012-0619-02
Environment
posted:2014/05/21

System for the elimination and collection of substances in wastewater

HIRASAWA, Izumi Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
This project uses crystallization phenomena for a system that disposes of and collects the targeted substances in a discriminating and safe way while making considerations for the characteristics of waste water, in that it has a low concentration of many materials. 
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2016-0203-05
Nanotechnology / Materials
posted:2016/02/03

The new interface measuring device using new plasmon sensor and raman scattering spectroscopy

HOMMA, Takayuki Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Chemistry)
● Molecular configuration at buried interface, i.e. solid / liquid, Chemical structure change of the atomic level, are simply measured in nanometer scale.
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2015-0303-04
Nanotechnology / Materials
posted:2015/03/03

Electroforming Technique using Self-assembled Monolayer(SAM) for Modified Nanopatterns

HOMMA, Takayuki Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Chemistry)
collaborative researchers:SAITO, Mikiko Senior Researcher
・Electroless NiP nanoimprinting mold replicated from Self-assembled Monolayer (SAM) modified Nanopatterns ・Elaborately manufactured in nano size and complicated form
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1038
Manufacturing Technology
posted:2014/04/03

Mold manufacturing method and the molds formed using the method

HOMMA, Takayuki Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Chemistry)
This invention provides an electrolytic thick-film metal mold with the feature that the adhesive force between the electroless nickel (Ni) plated film formed on the self-assembled film and the inorganic thin film on the substrate is greater than 10MPa and less than 50MPa. Embe...
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2014-0122-02
Nanotechnology / Materials
posted:2014/01/23

新規なプラズモンセンサ及びラマン分光法を用いた界面計測技術

HOMMA, Takayuki Professor (Faculty of Science and Engineering School of Advanced Science and Engineering Department of Applied Chemistry)
・表面プラズモンセンサと表面増強ラマン散乱を応用したラマン分光法による界面計測技術・新規なナノ構造の「反射型プラズモンセンサ」を開発・測定物に対応した自由なセンサ部の設計が可能・固液界面を深さ分解能0.1nm以下、非破壊での観察を実現
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2013-0130-05
Information Communication
posted:2014/05/21

Turning sports movies into a database, and automatic generation, operations analysis and strategy analysis of secondary movies

HONDA, Masaaki Professor (Faculty of Sport Sciences School of Sport and Sciences) (retired)
Sports movie databases that can be processed on computers (mainly soccer)Developing technology for automatic recognition of tournament movies and the movement of players, the ball, etc., kinematic analyses of hand and leg movements, developing statistical methods of predicting...
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2013-0130-06
Life sciences
posted:2014/05/21

Voice synthesizing technology based on human vocal cords

HONDA, Masaaki Professor (Faculty of Sport Sciences School of Sport and Sciences) (retired)
Analyzing the mechanical and acoustic mechanisms in the generation of voice in communicationAnalyzing the feedback from the sense of hearing and touch to the vocal system, and elucidating the mechanism for generating the quality of voice in emotional or ill people.
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2263
Life sciences
posted:2021/06/07
特開2021-81191

異種接合材の純モード  層間破壊靱性評価試験法の開発

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
◆ DCB試験の応用 ◆ 異種材接合に伴う混合モードの影響を除去◆ 熱残留応力の影響をキャンセル◆ 正確なモードⅠ層間破壊靱性の評価  
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2020-1124-02
Nanotechnology / Materials
posted:2020/12/17

Development of Test Method for Evaluating Pure Mode Interlaminar Fracture Toughness of Dissimilar Materials

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● Application of Double Cantilever Beam (DCB) test● Cancel the effects of mixing modes when joining dissimilar materials and thermal residual stress● Accurate mode I interlaminar fracture toughness evaluation
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2020-0131-07
Nanotechnology / Materials
posted:2020/02/06

Dissimilar Materials Bonding with 3D Nano Interface

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● Fabrication of nano structure on aluminum surfaces● Improvement of bonding strength by silane-coupling treatment● Direct bonding of CFRTP and Al by hotpress● Evaluation of shear strength and fracture toughness
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1862
Manufacturing Technology
posted:2018/05/24
特許第6809680号

3Dナノ構造界面を有する異種材直接接合

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
◆ 熱可塑性炭素繊維強化複合材料(CFRTP)の自動車車体への適用及び、生産性,リサイクル性,燃費の向上◆ マルチマテリアル化によるCFRTPとアルミニウム合金(Al)の接合技術開発◆ Al表面上のナノスパイク構造(NSS)の作製◆ CFRTPとAlのホットプレスによる直接接合◆ シランカップリング処理による接着強...
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2017-0223-07
Manufacturing Technology
posted:2017/02/23

Healing of Fatigue Crack in the Metallic Materials by Heat Treatment

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
collaborative researchers:藤田 耕平 , KAWADA, Hiroyuki Professor
● Implementation of fatigue crack healing of 90%● Implementation of static tensile strength of 75%● Fatigue crack healing due to elimination of oxide film by vacuum heating, plasticity-induced crack closure and atomic diffusion.
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2017-0223-06
Manufacturing Technology
posted:2017/02/23

Direct Bonding of Dissimilar Materials Having 3D Nanostructured Interfaces

HOSOI, Atsushi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
collaborative researchers:阿部 暉 , KAWADA, Hiroyuki Professor
● Fabrication of nanospike structure (NSS) on aluminum surfaces● Direct joining of CFRTP and Al by hotpress● Improvement of adhesive strength by silane-coupling treatment
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2016-1024-01
Life sciences
posted:2016/10/24

High-speed Tissue Dissection System for Spatial Omics Analysis of Tissue

HOSOKAWA, Masahito Associate Professor (Research Council (Research Organization) Institute for Nanoscience & Nanotechnology)
collaborative researchers:TAKEYAMA, Haruko Professor , 神原 秀記 招聘研究教授
● The automated system for rapid tissue microdissection  ● Tissues are automatically dissected and transferred into plate within 8 min for 96 sampling sites.
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2018-1026-05
Nanotechnology / Materials Manufacturing Technology
posted:2018/11/15

Fabrication of nano-optical patterns by electron beam irradiation

IMURA, Kohei Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
collaborative researchers:KAMURA, Yoshio Research Associate
● Nano-scale optical pattern was fabricated by electron beam irradiation    ● Polymer was used for inducing unique optical properties● Luminescence properties were controlled by tuning the condition
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2016-0203-04
Nanotechnology / Materials
posted:2016/02/03

Scanning Near-field Optical Microscope(SNOM)

IMURA, Kohei Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
collaborative researchers:溝端 秀聡
● Spectroscopic evaluations with a nanometer spatial resolution are possible ● Extended from single channel measurements to multiplex measurements● Wide spectral range with highly accurate measurements are achievable● Applicable to opaque samples as well as transparent ones
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