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Dive into the research topics where Hiroaki Okumura is active.

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Featured researches published by Hiroaki Okumura.


Cellulose | 2013

Development of continuous process enabling nanofibrillation of pulp and melt compounding

Katsuhito Suzuki; Hiroaki Okumura; Kazuo Kitagawa; Shinji Sato; Antonio Norio Nakagaito; Hiroyuki Yano

Microfibrillated cellulose (MFC), a mechanically fibrillated pulp mostly consisting of nanofibrils, is a very attractive material because of its high elastic modulus and strength. Although much research has been done on composites of MFC and polypropylene (PP), it has been difficult to produce such composites at an industrial level because of the difficulties in using MFC in such composites are not only connected to the polarity (that can be improved with compatibilizers), but also with the challenge to make a homogeneous blend of the components, and also the low temperature stability of cellulose that could cause problems during processing. We developed a new processing method which enables continuous microfibrillation of pulp and its melt compounding with PP. Never-dried kraft pulp and powdered PP were used as raw materials to obtain MFC by kneading via a twin-screw extruder. Scanning electron microscopy showed nano to submicron wide fibers entangled in the powdered PP. MFC did not aggregate during the melt compounding process, during which the water content was evaporated. Maleic anhydride polypropylene (MAPP) was used as a compatibilizer to reinforce interfacial adhesion between the polar hydroxyl groups of MFC and non-polar PP. We investigated the effect of MAPP content on the mechanical properties of the composite, which were drastically improved by MAPP addition. Needle-leaf unbleached kraft pulp (NUKP)-derived MFC composites had better mechanical properties than needle-leaf bleached kraft pulp (NBKP)-derived MFC composites. Injection molded NUKP-derived MFC composites had good mechanical and thermal properties. The tensile modulus of 50 wt% MFC composite was two times, and the tensile strength 1.5 times higher than that of neat PP. The heat distortion temperature of 50 wt% MFC content composite under 1.82 MPa flexural load was increased by 53 °C, from 69 to 122 °C. This newly developed continuous process using powder resin has the potential for application at an industrial level.


Cellulose | 2011

The synergetic effect of phenylphosphonic acid zinc and microfibrillated cellulose on the injection molding cycle time of PLA composites

Lisman Suryanegara; Hiroaki Okumura; Antonio Norio Nakagaito; Hiroyuki Yano


Cellulose | 2014

Novel high-strength, micro fibrillated cellulose-reinforced polypropylene composites using a cationic polymer as compatibilizer

Katsuhito Suzuki; Akihiro Sato; Hiroaki Okumura; Tadafumi Hashimoto; Antonio Norio Nakagaito; Hiroyuki Yano


Composites Part A-applied Science and Manufacturing | 2016

Surface modification of cellulose nanofibers with alkenyl succinic anhydride for high-density polyethylene reinforcement

Akihiro Sato; Daisuke Kabusaki; Hiroaki Okumura; Takeshi Nakatani; Fumiaki Nakatsubo; Hiroyuki Yano


Journal of Nutritional Science and Vitaminology | 2002

Absorption of Zinc from Dietary Casein Phosphopeptide Complex with Zinc in Rats Given a Soybean Protein-Based Diet

Tohru Matsui; Hiroaki Okumura; Hideo Yano


Cellulose | 2016

Investigation of the mechanism and effectiveness of cationic polymer as a compatibilizer in microfibrillated cellulose-reinforced polyolefins

Katsuhito Suzuki; Yoko Homma; Yuko Igarashi; Hiroaki Okumura; Takeshi Semba; Fumiaki Nakatsubo; Hiroyuki Yano


Archive | 2013

Method for producing resin composition comprising modified microfibrillated plant fibers, and same resin composition

Hiroyuki Yano; Akihiro Sato; Tomoaki Yoshimura; Yuko Igarashi; Daisuke Kabusaki; Fumiaki Nakatsubo; Hiroaki Okumura; Takeshi Semba; Kazuo Kitagawa; Hiromasa Kataoka; Kazuhiro Shintani


Cellulose | 2017

Effect of preparation process of microfibrillated cellulose-reinforced polypropylene upon dispersion and mechanical properties

Katsuhito Suzuki; Yoko Homma; Yuko Igarashi; Hiroaki Okumura; Hiroyuki Yano


Cellulose | 2018

Designing cellulose nanofiber surface for high density polyethylene reinforcement

Hiroyuki Yano; Haruo Omura; Yoko Honma; Hiroaki Okumura; Hironari Sano; Fumiaki Nakatsubo


Archive | 2005

BIODEGRADABLE RESIN/BAMBOO FIBER/SHELLAC COMPOSITE MATERIAL

Yasumochi Hamada; Kazuo Kitagawa; Machiko Mizoguchi; Hiroshi Nakajima; Masatomo Nakamura; Hirohisa Oda; Hiroaki Okumura; Nakayoshi Shinkawa; U.S.Ishiaku; Minoru Yoshida; 浩 中嶋; 昌智 中村; 和男 北川; 稔 吉田; 博昭 奥村; 博久 小田; 仲良 新川; 真知子 溝口; 泰以 濱田

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Hiroyuki Yano

Mitsubishi Chemical Corporation

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Hirohisa Oda

Gifu Pharmaceutical University

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