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Dive into the research topics where Keiichi Shirasu is active.

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Featured researches published by Keiichi Shirasu.


Archive | 2016

Application of Aligned Carbon Nanotube-Reinforced Polymer Composite to Electrothermal Actuator

Keiichi Shirasu; Go Yamamoto; Toshiyuki Hashida

Electrothermal bimorph actuators have been widely researched, comprising two layers with asymmetric expansion that generate a bending displacement. Actuation performance greatly relies upon the difference of the coefficients of thermal expansion (CTE) between the two material layers. Since traditionally used bimorph materials have positive CTE values, the generated displacements are restricted because of their relatively low CTE difference. Currently, the synthesis and characterization of carbon nanotube (CNT)/polymer composite actuators are topics of intense research activity. CNTs have been attracting much interest because of their superior electrical, thermal and mechanical properties. In addition, the negative CTE value of CNTs in the axial direction has been investigated analytically, leading one to expect that the CTE of the composites in a direction parallel to the CNT alignment will drastically decrease by containing the aligned CNTs into polymer materials. In this chapter, an experimen‐ tal method for determining the CTE of a CNT in the axial direction is discussed. Based on this result, we demonstrate an electrothermal bimorph actuator having a large bending displacement and high force output using an aligned CNT-reinforced epoxy composite and thin aluminum foil. Performance characteristics including power and work output per unit volume versus frequency are also reviewed.


Carbon | 2011

Nanotube fracture during the failure of carbon nanotube/alumina composites

Go Yamamoto; Keiichi Shirasu; Toshiyuki Hashida; Toshiyuki Takagi; Ji Won Suk; Jinho An; Richard D. Piner; Rodney S. Ruoff


Carbon | 2014

Structure–property relationships in thermally-annealed multi-walled carbon nanotubes

Go Yamamoto; Keiichi Shirasu; Yoshinori Sato; Toshiyuki Takagi; Toshiyuki Hashida


Carbon | 2015

Negative axial thermal expansion coefficient of carbon nanotubes: Experimental determination based on measurements of coefficient of thermal expansion for aligned carbon nanotube reinforced epoxy composites

Keiichi Shirasu; Go Yamamoto; Itaru Tamaki; Toshio Ogasawara; Yoshinobu Shimamura; Yoku Inoue; Toshiyuki Hashida


Composites Part A-applied Science and Manufacturing | 2014

Tensile mechanical properties of carbon nanotube/epoxy composite fabricated by pultrusion of carbon nanotube spun yarn preform

Yoshinobu Shimamura; Kahori Oshima; Keiichiro Tohgo; Tomoyuki Fujii; Keiichi Shirasu; Go Yamamoto; Toshiyuki Hashida; Ken Goto; Toshio Ogasawara; Kimiyoshi Naito; Takayuki Nakano; Yoku Inoue


Composites Part A-applied Science and Manufacturing | 2017

Potential use of CNTs for production of zero thermal expansion coefficient composite materials: An experimental evaluation of axial thermal expansion coefficient of CNTs using a combination of thermal expansion and uniaxial tensile tests

Keiichi Shirasu; Akihiro Nakamura; Go Yamamoto; Toshio Ogasawara; Yoshinobu Shimamura; Yoku Inoue; Toshiyuki Hashida


Materials Science and Engineering A-structural Materials Properties Microstructure and Processing | 2014

Microstructure–property relationships in pressureless-sintered carbon nanotube/alumina composites

Go Yamamoto; Keiichi Shirasu; Weili Wang; Toshiyuki Hashida


Carbon | 2014

Inclined slit-based pullout method for determining interfacial strength of multi-walled carbon nanotube–alumina composites

Weili Wang; Keiichi Shirasu; Go Yamamoto; Toshiyuki Hashida


Journal of The European Ceramic Society | 2015

Effects of processing conditions on microstructure, electrical conductivity and mechanical properties of MWCNT/alumina composites prepared by flocculation

Weili Wang; Go Yamamoto; Keiichi Shirasu; Toshiyuki Hashida


Journal of Materials Science | 2015

Relationship between microstructure and mechanical properties in acid-treated carbon nanotube-reinforced alumina composites

Keiichi Shirasu; Go Yamamoto; Weili Wang; Toshiyuki Hashida

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Toshiyuki Hashida

Japan Atomic Energy Research Institute

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Toshio Ogasawara

Tokyo University of Agriculture and Technology

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