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2024 Vol.37, Issue 1 Preview Page

Research Paper

29 February 2024. pp. 33-40
Abstract
References
1
ASTM, C. (2015) Standard Practice for Capping Cylindrical Concrete Specimens, C617M-15, 33.
2
BSI, B. (1983) Testing Concrete: Part 120-Method for Determination of Compressive Strength of Concrete Cores, British Standards Institution, London.
3
Chen, M., Li, L., Zheng, Y., Zhao, P., Lu, L., Cheng, X. (2018) Rheological and Mechanical Properties of Admixtures Modified 3D Printing Sulphoaluminate Cementitious Materials, Constr. & Build. Mater., 189, pp.601~611. 10.1016/j.conbuildmat.2018.09.037
4
EN, B. (2009) Testing Hardened Concrete, Tensile Splitting Strength of Test Specimens, British Standards Institution, 12390-6.
5
Gao, Y., De Schutter, G., Ye, G. (2013) Micro-and Meso-Scale Pore Structure in Mortar in Relation to Aggregate Content, Cem. & Concr. Res., 52, pp.149~160. 10.1016/j.cemconres.2013.05.011
6
Han, T.-S., Zhang, X., Kim, J.-S., Chung, S.-Y., Lim, J.H., Linder, C. (2018) Area of Lineal-Path Function for Describing the Pore Microstructures of Cement Paste and Their Relations to the Mechanical Properties Simulated from µ-CT Microstructures, Cem. & Concr. Compos., 89, pp.1~17. 10.1016/j.cemconcomp.2018.02.008
7
Hirsch, T., Dorn, T., Ehm, C., Stephan, D. (2020) Comparison of Printable Inorganic Binders-Key Properties for 3D Printable Materials, Second RILEM International Conference on Concrete and Digital Fabrication, 28, pp.53~63. 10.1007/978-3-030-49916-7_6
8
Kim, J.H., Chung, C.W., Lee, J.Y. (2014) Effects of Crushed Shells on the Physical Properties of Cement Mortar, J. Korea Iinst. Build. Constr., 14(1), pp.94~101. 10.5345/JKIBC.2014.14.1.094
9
Kim, J.-S., Lim, J.H., Stephan, D., Park, K., Han, T.-S. (2022a) Mechanical behavior Comparison of Single and Multiple Phase Models for Cement Paste using Micro-CT Images and Nanoindentation, Constr. & Build. Mater., 342, p.127938. 10.1016/j.conbuildmat.2022.127938
10
Kim, J.S., Suh, J., Pae, J., Moon, J., Han, T.S. (2022b) Gradient-based Phase Segmentation Method for Characterization of Hydrating Cement Paste Microstructures Obtained from X-ray Micro-CT, J. Build. Eng., 46, p.103721. 10.1016/j.jobe.2021.103721
11
Kjellsen, K.O., Monsøy, A., Isachsen, K., Detwiler, R.J. (2003) Preparation of Flat-Polished Specimens for SEM-Backscattered Electron Imaging and X-ray Microanalysis-Importance of Epoxy Impregnation, Cem. & Concr. Res., 33(4), pp.611~616. 10.1016/S0008-8846(02)01029-3
12
Kuo, W.T., Wang, H.Y., Shu, C.Y., Su, D.S. (2013) Engineering Properties of Controlled Low-Strength Materials Containing Waste Oyster Shells, Constr. & Build. Mater., 46, pp.128~133. 10.1016/j.conbuildmat.2013.04.020
13
Le, T.T., Austin, S.A., Lim, S., Buswell, R.A., Law, R., Gibb, A. G., Thorpe, T. (2012) Hardened Properties of High-performance Printing Concrete, Cem. & Concr. Res., 42(3), pp.558~566. 10.1016/j.cemconres.2011.12.003
14
Lee, M.J. (1999) Study on the Factor of Water Retention Capacity of Cement Mortar by Hydroxyalkyl Methylcellulose Ether, J. Korea Concr. Inst., 34(2), pp.153~160.
15
Liu, C., Chen, Y., Zhang, Z., Niu, G., Xiong, Y., Ma, L., Fu, Q., Chen, C., Banthia, N., Zhang, Y. (2022) Study of the Influence of Sand on Rheological Properties, Bubble Features and Buildability of Fresh Foamed Concrete for 3D Printing, Constr. & Build. Mater., 356, p.129292. 10.1016/j.conbuildmat.2022.129292
16
Long, W.J., Lin, C., Tao, J.L., Ye, T.H., Fang, Y. (2021) Printability and Particle Packing of 3D-Printable Limestone Calcined Clay Cement Composites, Constr. & Build. Mater., 282, p.122647. 10.1016/j.conbuildmat.2021.122647
17
Lyu, K., She, W., Miao, C., Chang, H., Gu, Y. (2019) Quantitative Characterization of Pore Morphology in Hardened Cement Paste Via SEM-BSE Image Analysis, Constr. & Build. Mater., 202, pp.589~602. 10.1016/j.conbuildmat.2019.01.055
18
Ma, G., Li, Z., Wang, L. (2018) Printable Properties of Cementitious Material Containing Copper Tailings for Extrusion based 3D Printing, Constr. & Build. Mater., 162, pp.613~627. 10.1016/j.conbuildmat.2017.12.051
19
Mo, K.H., Alengaram, U.J., Jumaat, M.Z., Lee, S.C., Goh, W.I., Yuen, C.W. (2018) Recycling of Seashell Waste in Concrete: A Review, Constr. & Build. Mater., 162, pp.751~764. 10.1016/j.conbuildmat.2017.12.009
20
Moeini, M.A., Hosseinpoor, M., Yahia, A. (2020) Effectiveness of the Rheometric Methods to Evaluate the Build-up of Cementitious Mortars used for 3D Printing, Constr. & Build. Mater., 257, p.119551. 10.1016/j.conbuildmat.2020.119551
21
Safi, B., Saidi, M., Daoui, A., Bellal, A., Mechekak, A., Toumi, K. (2015) The use of Seashells as a Fine Aggregate (by sand substitution) in Self-Compacting Mortar (SCM), Constr. & Build. Mater., 78, pp.430~438. 10.1016/j.conbuildmat.2015.01.009
22
Torquato, S., Haslach Jr, H.W. (2002) Random Heterogeneous Materials: Microstructure and Macroscopic Properties, Appl. Mech. Rev., 55(4), pp.B62~B63. 10.1115/1.1483342
23
Wolfs, R.J. M., Bos, F.P., Salet, T.A.M. (2019) Hardened Properties of 3D Printed Concrete: The Influence of Process Parameters on Interlayer Adhesion, Cem. & Concr. Res., 119, pp.132~140. 10.1016/j.cemconres.2019.02.017
24
Wu, S., Sun, K., Zhao, H., Zhang, F. (2018) Quantitative Invalidation Characterization of Portland Cement based on BSE and EDS Analysis, Constr. & Build. Mater., 158, pp. 700~706. 10.1016/j.conbuildmat.2017.09.187
25
Yang, E.I., Yi, S.T., Leem, Y.M. (2005) Effect of Oyster Shell Substituted for Fine Aggregate on Concrete Characteristics: Part I. Fundamental Properties, Cem. & Concr. Res., 35(11), pp.2175~2182. 10.1016/j.cemconres.2005.03.016
26
Zhang, C., Hou, Z., Chen, C., Zhang, Y., Mechtcherine, V., Sun, Z. (2019) Design of 3D Printable Concrete based on the Relationship between Flowability of Cement Paste and Optimum Aggregate Content, Cem. & Concr. Compos., 104, p.103406. 10.1016/j.cemconcomp.2019.103406
27
Zhou, L., Gou, M., Zhang, H. (2023) Investigation on the Applicability of Bauxite Tailings as Fine Aggregate to Prepare 3D Printing Mortar, Constr. & Build. Mater., 364, p.129904. 10.1016/j.conbuildmat.2022.129904
Information
  • Publisher :Computational Structural Engineering Institute of Korea
  • Publisher(Ko) :한국전산구조공학회
  • Journal Title :Journal of the Computational Structural Engineering Institute of Korea
  • Journal Title(Ko) :한국전산구조공학회 논문집
  • Volume : 37
  • No :1
  • Pages :33-40
  • Received Date : 2023-11-13
  • Revised Date : 2023-11-20
  • Accepted Date : 2023-11-21