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2316
Nanotechnology / Materials
posted:2020/11/12
特許第7491547号
ダイヤモンド電界効果トランジスタ及びその製造方法
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering) (retired)
2020-0131-03
Nanotechnology / Materials
posted:2020/02/06
Development of new electric wireless seawater communication
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering) (retired)
● Electric communication utilizing conductivity of seawater● Transmitter : metal electrode ⇔ Receiver : transistor shape sensor operating in solutions● Apply square wave voltage to metal electrode &nb...
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
2225
Information Communication
posted:2019/11/08
特許第7348634号
複数の視野外障害物を検知するシステム
KAWANISHI, Tetsuya Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2019-0312-07
Nanotechnology / Materials
posted:2019/04/22
Fabrication of carbon nanotube yarn with high strength, conductivity and lightness
KAWADA, Hiroyuki Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● Untwisted CNT yarns were fabricated from CNT array (Fig. 1)● Impurities and defect structures were removed by graphitization treatment● CNT yarns were combined with polymer or metal to enhance load transfer capability or conductivity between CNTs
2019-0312-06
Nanotechnology / Materials
posted:2019/04/22
Display Device for Visual Texture
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● We proposed spatial mixing using glossy and matte surfaces for reconstruction of visual texture.● Our method can display various visual texture by changing the area ratio of glossy and matte surfaces.
検出方法及び検出装置
TOGAWA, Nozomu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
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...
ハードウェアトロイの検出方法、ハードウェアトロイの検出プログラム、およびハードウェアトロイの検出装置
TOGAWA, Nozomu Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
ノーマリオフ動作ダイヤモンド電力素子及びこれを用いたインバータ
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering) (retired)
トランジスタの製造方法及びセンサ素子
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering) (retired)
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.
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
2017-0223-04
Nanotechnology / Materials
posted:2017/02/23
Operation of 3-D MEMS Micro Mirror by Single Superposed Driving Signal
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● By single driving apparatus, MEMS micro mirror is actuated in three resonant modes● MEMS micro mirror is operated in 3-D by single superposed signal with the three resonant frequencies
曲げ変形および伸縮変形可能な電子デバイス
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
視覚的質感提示デバイスおよび視覚的質感提示方法
IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
2016-0203-08
Nanotechnology / Materials
posted:2016/02/03
Boron-doped nanocrystalline diamond as a p-type transparent electrode
KAWARADA, Hiroshi Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering) (retired)
collaborative researchers:古閑 三靖 (retired)
● Production method of the p-type conduction of high Boron-doped NCD with high transmittance and excellent electrical characteristic● Achieving two layers which High Boron-doped NCD was grown on top of undoped transparent NCD with quartz substrate