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Dive into the research topics where Takeo Hamamatsu is active.

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Featured researches published by Takeo Hamamatsu.


Journal of Power Sources | 1998

Nickel electrode active material; a nickel electrode and a nickel alkali storage cell using such nickel electrode active material; and production methods of such material, electrode, and cell

Akifumi Yamawaki; Shinsuke Nakahori; Motoo Tadokoro; Takeo Hamamatsu; Yoshitaka Baba

Fine-grained nickel electrode active material, each of which contributing to electrode reaction; production method of the fine-grained nickel electrode active material; and a nickel alkali storage cell of high capacity which is excellent in over discharge characteristics. In order to produce the fine-grained nickel electrode active material, fine-grained nickel hydroxide is precipitated by adding a given amount of alkali to solution in which at least a nickel compound is dissolved while the solution is stirred. Each of the fine-grained nickel hydroxide has pores with 20 vol % or more of a combined volume of the pores being composed of pores of diameter 60 Å or greater. Next, a given amount of alkali is gradually added to suspension including the fine-grained nickel hydroxide and dissolved cobalt compound so that cobalt hydroxide is precipitated on the external surface of the fine-grained nickel hydroxide. The fine-grained nickel electrode active material is produced in the above mentioned way. Each of the fine-grained nickel electrode active material comprises a nickel hydroxide and cobalt oxide having distorted crystal structure and oxidation number higher than +2. The nickel hydroxide has pores whose diameters are 60 Å or greater. And the volume of such pores amounts to 20 vol % or more of the combined volume of all of the pores.


Archive | 1996

Nickel active material for use in alkali storage cells and its manufacturing method

Yoshitaka Baba; Motoo Tadokoro; Takeo Hamamatsu; Akifumi Yamawaki


Archive | 1996

Non-sintered nickel electrode with excellent over-discharge characteristics, an alkaline storage cell having the non-sintered nickel electrode, and a manufacturing method of the non-sintered nickel electrode

Akifumi Yamawaki; Shinsuke Nakahori; Takeo Hamamatsu; Yoshitaka Baba


Archive | 2000

Sealed rectangular battery and manufacturing method for the same

Takashi Nagase; Takeo Hamamatsu; Masao Inoue; Hideyuki Asanuma; Naoyoshi Hinotsu


Archive | 1996

A non-sintered nickel electrode, an alkaline storage cell and manufacturing method

Akifumi Yamawaki; Shinsuke Nakahori; Takeo Hamamatsu; Yoshitaka Baba


Archive | 1995

NICKEL ELECTRODE ACTIVE MATERIAL, NICKEL ELECTRODE AND NICKEL-ALKALINE BATTERY USING THE MATERIAL, AND MANUFACTURE THEREOF

Yoshitaka Baba; Takeo Hamamatsu; Shinsuke Nakahori; Mikiaki Tadokoro; Akifumi Yamawaki; 真介 中堀; 章史 山脇; 太計男 浜松; 幹朗 田所; 良貴 馬場


Archive | 1995

Non-sintered nickel electrode for alkaline storage battery, manufacture thereof and alkaline storage battery

Yoshitaka Baba; Takeo Hamamatsu; Shinsuke Nakahori; Akifumi Yamawaki; 真介 中堀; 章史 山脇; 太計男 浜松; 良貴 馬場


Journal of Power Sources | 2001

Improved rapidly-quenched hydrogen-absorbing alloys for development of improved-capacity nickel metal hydride batteries

Tadashi Ise; Takeo Hamamatsu; Teruhiko Imoto; Mitsuzo Nogami; Shinsuke Nakahori


Archive | 1989

Method and apparatus for manufacturing electrode for battery

Makoto Kambayashi; Kensuke Nakatani; Kazuaki Ozaki; Masahito Tomida; Hiroshi Haraguchi; Takeo Hamamatsu


Archive | 2000

Hermetically sealed rectangular battery

Naoyoshi Hinotu; Takeo Hamamatsu; Hiroki Ochi

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