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Dive into the research topics where Kosuke Yokozeki is active.

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Featured researches published by Kosuke Yokozeki.


Concrete Research and Technology | 2012

Durability of Combination Type Self Compacting Concrete After Twenty-one-year Exposure

Noboru Sakata; Kosuke Yokozeki; Ryoichi Ashizawa; Kengo Seki

Three large size specimens composed of a combination type self compacting concrete in the range of slump flow 45-76cm were manufactured 21 years ago. The concrete was placed without compaction. These specimens have been exposed to nearshore for 11 years, after that, these were exposed to 20km inland for another 10 years. Then the authors measured the properties of the concretes such as strength, porosity, carbonation depth, and chloride ion diffusivity. As a result, the porosity of the concretes was almost constant depending on neither slump flow nor flow distance. Then, it was found that the combination type self compacting concrete was more durable than conventional concrete with the same W/C. Thus, the carbonation depth of the self compacting concrete was 15-80 percent and the chloride ion diffusion coefficient was 1-10 percent of conventional concrete, respectively.21年前に,スランプフロー45~76cmの範囲で流動性の異なる3つの併用系高流動コンクリートを用いて,それぞれ締固めを行わずに,約6m流動させて大型ブロックを作製した。このブロックを11年間海岸近くに暴露した後,さらに10年間内陸部に暴露し,打設後21年経過したコンクリートの強度,空隙率,中性化深さ,塩化物イオン量などを測定した。その結果,材齢21年の試験体表面部の圧縮強度は流動距離によるばらつきが少ないこと,空隙率はスランプフローや流動距離によらず13~16%とほぼ同じであること,中性化深さは同一水セメント比の普通コンクリートと比較して15~80%程度であること,塩化物イオンの見掛けの拡散係数は同一水セメント比の普通コンクリートと比較して1/10~1/100程度であることが分かった。このことから,併用系高流動コンクリートは普通コンクリートに比べて高い耐久性を有することが確認された。


Construction and Building Materials | 2014

Development of a new ecological concrete with CO2 emissions below zero

Takayuki Higuchi; Minoru Morioka; Ichiro Yoshioka; Kosuke Yokozeki


Journal of Advanced Concrete Technology | 2003

Study on New Viscosity Agent for Combination Use Type of Self-Compacting Concrete

Noboru Sakata; Shuji Yanai; Kosuke Yokozeki; Kyuichi Maruyama


Archive | 2008

Apparatus for carbonation curing and process for producing cured cement object with densified surface layer

Kenzo Watanabe; Kosuke Yokozeki; Takeshi Torichigai; Noboru Sakata; Shigeyuki Date; Minoru Morioka


Archive | 2011

Carbonation curing eqipment, process for producing carbonated concrete, and method for fixing carbon dioxide

Atsunori Matsubara; Ichiro Yoshioka; Daisaku Obata; Takahito Oikawa; Hidetsugu Yokota; Kenji Yamamoto; Toru Yagi; Takumi Kushihashi; Minoru Morioka; Kosuke Yokozeki; Takeshi Torichigai; Satoru Kobayashi; Kengo Seki; Ryoichi Ashizawa


Archive | 2006

PREDICTION METHOD FOR REINFORCEMENT CORROSION, AND MONITORING SYSTEM FOR REINFORCEMENT CORROSION

Toshinori Chikamoto; Naoto Daiho; Yoshiki Hiraishi; Shinichi Miyasato; Kumiko Suda; Kosuke Yokozeki; 直人 大保; 心一 宮里; 剛紀 平石; 康祐 横関; 俊憲 親本


Archive | 2004

MORTAR OR CONCRETE HAVING COMPACTED SURFACE LAYER AND ITS MANUFACTURING METHOD

Ryoichi Ashizawa; Takayuki Higuchi; Minoru Morioka; Koji Okuyama; Noboru Sakata; Kenzo Watanabe; Kosuke Yokozeki; 昇 坂田; 康二 奥山; 隆行 樋口; 康祐 横関; 賢三 渡邉; 実 盛岡; 良一 芦澤


Energy Procedia | 2013

New Ecological Concrete that Reduces CO2 Emissions Below Zero Level ∼ New Method for CO2 Capture and Storage ∼☆

K. Yoshioka; D. Obata; H. Nanjo; Kosuke Yokozeki; Takeshi Torichigai; M. Morioka; T. Higuchi


Archive | 2008

Water-stop structure, construction method therefor, and method of performing water stop of anchor penetration part of seepage control member

Kazumi Kobayashi; Makoto Nakajima; Katsu Toida; Takeshi Torii; Kosuke Yokozeki; 誠門 中嶌; 剛 取違; 一三 小林; 克 戸井田; 康祐 横関


Archive | 2004

Corrosion estimating method of steel material

Toshinori Chikamoto; Yoshiki Hiraishi; Kumiko Suda; Kosuke Yokozeki; 剛紀 平石; 康祐 横関; 俊憲 親本

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