PSI - Issue 64
Sothyrak Rath et al. / Procedia Structural Integrity 64 (2024) 122–129 Author name / Structural Integrity Procedia 00 (2019) 000 – 000
129
8
Acknowledgements This work was supported by JSPS KAKENHI [grant number JP20J14131].
References ASTM C666 / C666M-15, 2015. Standard Test Method for Resistance of Concrete to Rapid Freezing and Thawing. ASTM International. ASTM C1202- 22e1, 2022. Standard test method for electrical indication of concrete’s ability to resist chloride ion penetration. Annual B ook of ASTM Standards 04.02. Chung, S.Y., Sikora, P., Rucinska, T., Stephan, D., Abd Elrahman, M., 2020. Comparison of the pore size distributions of concretes with different air-entraining admixture dosages using 2D and 3D imaging approaches. Mater Charact 162, 110182. Clemeña, G.G., 1972. Determination of the cement content of hardened concrete by selective solution. In: Virginia Transportation Research Council. Collins, A.R., 1944. The destruction of concrete by frost. Journal of the Institution of Civil Engineers 23, 29 – 41. Dow & Toray Industries. DK-Q1-1183. (https://division.nagase.co.jp/antifoam/products/87/) Gagne, R., Pigeon, M., 1990. Deicer salt scaling resistance of high-performance concrete. ACI Symposium Publication 122, 29 – 44. Gao, Y., De Schutter, G., Ye, G., Tan, Z., Wu, K., 2014. The ITZ microstructure, thickness and porosity in blended cementitious composite: Effects of curing age, water to binder ratio and aggregate content. Compos B Eng 60, 1 – 13. González, D.C., Mena, Á., Mínguez, J., Vicente, M.A., 2021. Influence of air-entraining agent and freeze-thaw action on pore structure in high strength concrete by using CT-Scan technology. Cold Reg Sci Technol 192, 103397. ISO 15901-1:2016, 2016. Evaluation of pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption — Part 1: Mercury porosimetry. ISO. JIS A 1127:2010, 2010. Methods of test for dynamic modulus of elasticity, rigidity and Poisson’s ratio of concrete by resonan ce vibration. Japanese Standards Association. JIS A 1128, 2019. Method of test for air content of fresh concrete by pressure method. Japanese Standards Association. JIS A1148, 2015. Method of test for resistance of concrete to freezing and thawing. JIS. KAO Global Chemicals Japan, n.d. Visco Top 200LS-2. (https://chemical.kao.com/en/products/A0006291_en/?region=gl) Korhonen, C.J., 2002. Effect of High Doses of Chemical Admixtures on the Freeze-Thaw Durability of Portland Cement Concrete. In: Engineer Research and Development Center. Litvan, G.G., 1972. Phase Transitions of Adsorbates: IV, Mechanism of Frost Action in Hardened Cement Paste*. Journal of the American Ceramic Society 55, 38 – 42. Master Builder, n.d. MasterGlenium SP8SV. (https://mbcc.sika.com/ja-jp/products/masterglenium/masterglenium-sp8sv) Master Builder, n.d. Master Air 303A. (https://mbcc.sika.com/en-asiapacific/products/masterair/masterair-303a) Naik, T.R., Malhotra, V.M., Popovics, J.S., 2003. The ultrasonic pulse velocity method, in: Handbook on Nondestructive Testing of Concrete, CRC Press, Florida, pp. 1 – 8. NDIS 3439, 2022. Method of sampling and testing for compressive strength of small size drilled cores of concrete. The Japanese Society for Non-Destructive Inspection. Powers, T.C., 1975. Freezing effects in concrete. ACI Symposium Publication 47, 1 – 12. Powers, T.C., 1968. The properties of fresh concrete. John Wiley & Sons, New York. Powers, T.C., 1945. A Working Hypothesis for Further Studies of Frost Resistance of Concrete. ACI Journal Proceedings 41. Rath, S., Sakai, Y., Tanaka, S., 2023. Drilling powder method to estimate concrete compressive strength. Sakai, Y., Nakamura, C., Kishi, T., 2014. Evaluation of mass transfer resistance of concrete based on representative pore size of permeation resistance. Constr Build Mater 51, 40 – 46. Setzer, M.J., Heine, P., Kasparek, S., Palecki, S., Auberg, R., Feldrappe, V., Siebel, E., 2004. Test methods of frost resistance of concrete: CIF Test: Capillary suction, internal damage and freeze thaw test — Reference method and alternative methods A and B. Mater Struct 37, 743 – 753. Tanaka, S., 2021. Enhanced evaluation of pore structure by inverse analysis of mercury intrusion porosimetry and its application to minimize the destructiveness of concrete quality evaluation. Doctoral thesis submitted to The University of Tokyo, Tokyo. Tanaka, S., Sakai, Y., 2021. Study on the correlation between the compressive strength of hardened cement paste and the physical properties of drilling powder. Constr Build Mater 269, 121815. Valenza, J.J., Scherer, G.W., 2007. A review of salt scaling: I. Phenomenology. Cem Concr Res 37, 1022 – 1034. Washburn, E.W., 1921. Note on a Method of Determining the Distribution of Pore Sizes in a Porous Material, Proceedings of the National Academy of Sciences of the United States of America. pp. 115 – 116. Xuan Quy, N., Noguchi, T., Na, S., Kim, J., Hama, Y., 2020. Distribution Map of Frost Resistance for Cement-Based Materials Based on Pore Structure Change. Materials 13, 2509. Yiching, L., Tsong, Y., Chao Peng, L., 2003. Prediction of Ultrasonic Pulse Velocity (UPV) in Concrete. ACI Mater J 100, 21 – 28.
Made with FlippingBook Digital Proposal Maker