COMPARISON OF PROTECTED PASTE VOLUMES ESTIMATED BY THE DIRICHLET TESSELLATION MODEL AND THE CONVENTIONAL PASTE-AIR PROXIMITY MODELS
Author:
Affiliation:
1. KANAZAWA UNIVERSITY, Graduate School of Natural Science and Technology(Kakuma-machi, Kanazawa-shi, Ishikawa 920-1192, Japan)
2. KANAZAWA UNIVERSITY, School of Geosciences and Civil Engineering(Kakuma-machi, Kanazawa-shi, Ishikawa 920-1192, Japan)
Publisher
Japan Cement Association
Subject
General Materials Science
Link
https://www.jstage.jst.go.jp/article/cement/76/1/76_211/_pdf
Reference12 articles.
1. 1) T. C. Powers:The air requirement of frost-resistant concrete, Proc. Highway Res. Board, Vol.29, pp.184-211(1950)
2. 2) 古東秀文、室谷卓実、五十嵐心一:モルタルの低倍率画像から得られる気泡間隔特性値と気泡間隔係数の対応、セメント・コンクリート論文集、Vol.69、pp.395-402(2015)
3. 3) T. Murotani, S. Igarashi and H. Koto:Distribution analysis and modeling of air voids in concrete as spatial point processes, Cement and Concrete Research, Vol.115, pp.124-132(2019)
4. 4) A. Baddeley, E. Rubak, R. Turner:Spatial Point Patterns, Methodology and Applications with R, CRC Press(2016)
5. 5) K. Snyder, K. Natesaiyer and K. Hover:The stereological and statistical properties of entrained air voids in concrete:A mathematical basis for air void system characterization, Materials Science of Concrete Ⅵ(eds. S. Mindess and J. Skalny), pp.129-214(2001)
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1. COMPARISON OF PROTECTED PASTE VOLUMES FROM FROST ATTACK BETWEEN AIR VOIDS AND SUPERABSORBENT POLYMER PARTICLES USING THREE-DIMENSIONAL PARTICLE SIZE DISTRIBUTION;Cement Science and Concrete Technology;2024-03-29
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