Packing density of ternary cementitious particles based on wet packing method
The particle packing of cementitious materials is of essential importance to the performance of paste which constitutes the most uncertain part of mortar/concrete. Such importance is arising from the fact that the design of cementitious particle system inevitably involves the packing design, particu...
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sg-ntu-dr.10356-1641222023-01-05T05:45:09Z Packing density of ternary cementitious particles based on wet packing method Chu, Shaohua Lam, W. L. Li, L. Poon, Chi Sun School of Civil and Environmental Engineering Engineering::Civil engineering Particle Packing Packing Density The particle packing of cementitious materials is of essential importance to the performance of paste which constitutes the most uncertain part of mortar/concrete. Such importance is arising from the fact that the design of cementitious particle system inevitably involves the packing design, particularly for the emerging materials of 3D printable concrete and ultra-high performance concrete (UHPC). So far, scientific understanding of the particle packing in these emerging materials remains inadequate. In this regard, wet packing method (WPM) was used to measure the wet packing density (WPD) of ternary particle systems consisting of cement, pulverized fuel ash (PFA) and micro-silica (MS). The optimum ternary particle system in terms of WPD was determined. Comparison between the experimental results and Andreasen and Andersen (A&A) model revealed the limitations of A&A model. The design approach based on WPD contour shall advance particle packing-oriented cement and concrete science towards sustainable concrete design. 2023-01-05T05:45:09Z 2023-01-05T05:45:09Z 2022 Journal Article Chu, S., Lam, W. L., Li, L. & Poon, C. S. (2022). Packing density of ternary cementitious particles based on wet packing method. Powder Technology, 405, 117493-. https://dx.doi.org/10.1016/j.powtec.2022.117493 0032-5910 https://hdl.handle.net/10356/164122 10.1016/j.powtec.2022.117493 2-s2.0-85131457799 405 117493 en Powder Technology © 2022 Elsevier B.V. All rights reserved. |
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Engineering::Civil engineering Particle Packing Packing Density Chu, Shaohua Lam, W. L. Li, L. Poon, Chi Sun Packing density of ternary cementitious particles based on wet packing method |
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The particle packing of cementitious materials is of essential importance to the performance of paste which constitutes the most uncertain part of mortar/concrete. Such importance is arising from the fact that the design of cementitious particle system inevitably involves the packing design, particularly for the emerging materials of 3D printable concrete and ultra-high performance concrete (UHPC). So far, scientific understanding of the particle packing in these emerging materials remains inadequate. In this regard, wet packing method (WPM) was used to measure the wet packing density (WPD) of ternary particle systems consisting of cement, pulverized fuel ash (PFA) and micro-silica (MS). The optimum ternary particle system in terms of WPD was determined. Comparison between the experimental results and Andreasen and Andersen (A&A) model revealed the limitations of A&A model. The design approach based on WPD contour shall advance particle packing-oriented cement and concrete science towards sustainable concrete design. |
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School of Civil and Environmental Engineering |
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School of Civil and Environmental Engineering Chu, Shaohua Lam, W. L. Li, L. Poon, Chi Sun |
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Article |
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Chu, Shaohua Lam, W. L. Li, L. Poon, Chi Sun |
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Chu, Shaohua |
title |
Packing density of ternary cementitious particles based on wet packing method |
title_short |
Packing density of ternary cementitious particles based on wet packing method |
title_full |
Packing density of ternary cementitious particles based on wet packing method |
title_fullStr |
Packing density of ternary cementitious particles based on wet packing method |
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Packing density of ternary cementitious particles based on wet packing method |
title_sort |
packing density of ternary cementitious particles based on wet packing method |
publishDate |
2023 |
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https://hdl.handle.net/10356/164122 |
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1754611267000074240 |