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Featured researches published by Takashi Yokomuro.


Cement Science and Concrete Technology | 2014

STRENGTH DEVELOPMENT AND SHRINKAGE CRACKING TENDENCY OF CONCRETE WITH BLAST-FURNACE SLAG CEMENT USING HIGH ALITE CLINKER

Shingo Miyazawa; Takashi Yokomuro; Etsuo Sakai; Nobukazu Nito

In order to reduce CO₂ emission on the process of cement production, it is efficient to use blended cement widely for concrete structures instead of ordinary Portland cement. From this point of view, blast-furnace slag cement has been widely used for civil engineering structures in Japan. However, blast-furnace slag cement has rarely been used for reinforced concrete buildings, mainly because strength development of this type of cement is slower at early ages compared to ordinary Portland cement. In this study, in order to improve strength development of blast-furnace slag cement concrete at early ages, a sample of high alite clinker with C₃S content of 72%, by Bogue equation, was manufactured at a commercial cement plant. Strength development and shrinkage cracking tendency of blast-furnace slag cement with slag content of 20% using the high alite clinker were experimentally investigated. Influences of temperature and moisture condition on strength development were also investigated. Tendency of cracking due to dying was investigated with uniaxial restraint tests, in which the drying period until cracking was observed. It was proved from the experimental results that early-age strength development of blast-furnace slag cement was improved by using the high alite cement especially at low temperature. Shrinkage cracking properties was also improved compared with ordinary Portland cement and conventional blast-furnace slag cement type A.高炉セメントを用いたコンクリートの初期材齢における強度発現性の改善を目的とし、エーライト量の大きいセメントを実機プラントで試作した。このセメントに高炉スラグ微粉末を20%混入した高炉セメントを用いたコンクリートの強度発現性および収縮ひび割れ抵抗性について実験により検討した。その結果、高エーライトセメントを用いた高炉セメントは、普通ポルトランドセメントや通常の高炉セメントと比較して、低温時においても強度発現性に優れており、収縮ひび割れ抵抗性の向上も期待できることが明らかとなった。


Construction and Building Materials | 2014

Properties of concrete using high C3S cement with ground granulated blast-furnace slag

Shingo Miyazawa; Takashi Yokomuro; Etsuo Sakai; Atsushi Yatagai; Nobukazu Nito; Kiyoshi Koibuchi


Cement Science and Concrete Technology | 2010

PROPERTIES OF CONCRETE USING BLAST-FURNACE SLAG CEMENT TYPE A WITH MODIFIED CHEMICAL COMPOSITION

Shingo Miyazawa; Takashi Yokomuro; Hiromi Fujiwara; Kiyoshi Koibuchi


World Academy of Science, Engineering and Technology, International Journal of Civil, Environmental, Structural, Construction and Architectural Engineering | 2017

Self-Healing Performance of Heavyweight Concrete with Steam Curing

Hideki Igawa; Yoshinori Kitsutaka; Takashi Yokomuro; Hideo Eguchi


Cement Science and Concrete Technology | 2015

RESEARCH ON SELF-HEALING PERFORMANCE OF HEAVYWEIGHT CONCRETE

Hideki Igawa; Takashi Yokomuro; Yoshinori Kitsutaka; Hideo Eguchi


Journal of Structural and Construction Engineering (transactions of Aij) | 1998

EFFECT OF GROUND GRANULATED BLAST-FURNACE SLAG ON PORE STRUCTURE AND COMPRESSIVE STRENGTH OF HARDENED CEMENT PASTES

Changjiang Li; Akihiko Yoda; Takashi Yokomuro


Journal of Structural and Construction Engineering (transactions of Aij) | 2017

EFFECT OF SPECIFIC SURFACE AREA OF GROUND GRANULATED BLAST FURNACE SLAG AND ITS SUBSTITUTION RATE ON STRENGTH DEVELOPMENT OF CONCRETE

Yusuke Miyazawa; Hisashi Sugiyama; Takashi Yokomuro


Concrete Research and Technology | 2017

Surface Permeability and Pore Volume of Shielding Containers Made Using Heavyweight Concrete

Hideki Igawa; Takashi Yokomuro; Yoshinori Kitsutaka; Yoji Ogawa


Concrete Research and Technology | 2016

Relationship between Surface Permeability and Pore Volume of Heavyweight Concrete

Hideki Igawa; Takashi Yokomuro; Yoshinori Kitsutaka; Yoji Ogawa


Cement Science and Concrete Technology | 2016

STRENGTH DEVELOPMENT AND DURABILITY OF FLY ASH CEMENT USING CLINKER WITH MODIFIED MINERAL COMPOSITION

Teng Zhao; Shingo Miyazawa; Takashi Yokomuro; Etsuo Sakai

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Akihiko Yoda

Ashikaga Institute of Technology

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Shingo Miyazawa

Ashikaga Institute of Technology

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Etsuo Sakai

Tokyo Institute of Technology

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Yoshinori Kitsutaka

Tokyo Metropolitan University

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Hirohumi Hamada

Ashikaga Institute of Technology

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Yoshitomo Okada

Ashikaga Institute of Technology

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