日本大学生産工学部研究報告A(理工系)第54巻第2号
10/62

Journal, 5 (6), 45-48. (in Japanese)7) Okamoto, H., Kikukawa, H., Kokubu, K., Suzuki, K., Koshikawa, S., Kamiyama, Y., Murata, J. and Shimoyama, Y., (2004). “Introduction to Science of Concrete Construction and Design.” Tokyo: Gihodo Shuppan Co., Ltd., 54-57. (in Japanese)8) Okamoto, H., Kikukawa, H., Kokubu, K., Suzuki, K., Koshikawa, S,. Kamiyama, Y., Murata, J. and Shimoyama, Y., (2004). “Introduction to Science of Concrete Construction and Design.” Tokyo: Gihodo Shuppan Co., Ltd., 205-205. (in Japanese)9) Suzuki, K., Koshikawa, S. and Itoh, Y., (2004). “Studies on Pipe Flow of Concre te.” Concrete research and technology, 15 (2), 47-57. (in Japanese)10) JSCE, (1985). “Recommended practice for pumping concrete.” Tokyo: Japan Society of Civil Engineers, 157-164. (in Japanese)11) Gotoh, R., Hirai, N. and Hanai, T., (1962). “Rheology and and its applications.” Tokyo: Kyoritsu Shuppan, 29-29. (in Japanese)12) Mori, H. and Tanigawa, Y., (1987). “Simulation of Flow Behavior of Fresh Concrete by Visco-Plastic Finite Element Analysis.” Transactions of AIJ. Journal of structural and construction engineering, 374 (0), 1-9. (in Japanese)13) Yamanouchi, K., Yamaguchi, S. and Itoh, Y., (2017). “Measurement of Rheological Quantities Using a Pipe Viscometer.” Proceedings of the Japan Concrete Institute, 39 (1), 1159-1164. (in Japanese)14) Oh, S.G., Noguchi, T. and Tomosawa, F., (1998). “2057 Evaluation of Rheological Properties of Bingham Fluid by Rheometer of Revolving Cylinder Type.” Proceedings of the Japan Concrete Institute, 20 (2), 337-342. (in Japanese)15) Shimoyama, Y. and Murata, J., (1976). “Deformation of fresh concrete under static loading.” The annual report of cement and concrete engineering, 30 (0), 270-273. (in Japanese)16) Kokado, T., Hosoda, T. and Miyagawa, T., (2000). “Study on a Method of Obtaining Rheological Coefficients of High-Flow Concrete with Numerical Analysis.” Journal of JSCE, (648/V-47), 109-125. (in Japanese)17) Tanigawa, Y., Mori, H., Kurokawa, Y. and Komura, R., (1992). “Rheological Study on Funnel Test of Viscoplastic Cement-Based Materials.” Proceedings of the Symposium on Cement-based filling materials, 1-6. (in Japanese)18) Kokado, T., Hosoda, T., Miyagawa, T. and Fujii, M., (1997). “Study on a Method of Evaluating a Yield Value of Fresh Concrete with a Slump Flow Value.” Journal of JSCE, (No. 578/V-37), 19-29.19) Shimoyama, Y., (1988). “Basic Study on Deformation of Fresh Concrete.” Thesis (PhD). Tokyo Metropolitan University, 104-116.20) Murata, J. and Suzuki, K., (1997). “New method of testing the flowability of grout.” Magazine of Concrete Research, 49 (181), 269-276.21) Ritchie, A.G.B., (1962). “The triaxial testing of fresh concrete.” Magazine of Concrete Research, 14 (40), 37-42.22) Houghton, D.L., (1969). “Preplaced Aggregate Concrete for Structural and Mass Concrete.” ACI Jour., Reported by ACI Committee 304, 785-790.23) Berg, W.V., (1979). “Influence of specific surface and concentration of solids upon the flow behaviour of cement pastes.” Magazine of Concrete Research, 31 (109), 211-216.24) Cao, G., Li, Z. and Guo, K., (2017) “Analytical Study on the Change of Fluidity of Fresh Concrete Containing Mineral Admixture with Rest Time.” Journal of Advanced Concrete Technology, 15, 713-723.25) Yamanouchi, K., Tsujimoto, K., Ishikawa, N., Irie, K. and Suzuki, K., (2013). “A Proposal of Fresh Concrete Flowability Evaluation Using a Tube Viscometer.” the 17th Ready Mixed Concrete Technology Conference, Tokyo 25-26 April 2013, 47-52. (in Japanese)26) Murata, J. and Kikukawa, H., (1979). “A Proposal on the Method for the Estimation of Rheological Quantities of Fresh Concrete.” Proceedings of the Japan Society of Civil Engineers, 1979 (284), 117-125. (in Japanese)─ 8 ─

元のページ  ../index.html#10

このブックを見る