Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach
A fast and nondestructive method for predicting density and compressive strength of Lightweight Foamed Concrete (LFC) is proposed. The measurement is carried out using a frequency domain approach to determine the Lightweight Foamed Concrete dielectric constant from a frequency range of 150 kHz to 8...
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2021
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my.utm.940382022-02-28T13:31:26Z http://eprints.utm.my/id/eprint/94038/ Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach Lee, Kim Yee Phua, Yeong Nan Lim, Siong Kang You, Kok Yeow Cheng, Ee Meng TK Electrical engineering. Electronics Nuclear engineering A fast and nondestructive method for predicting density and compressive strength of Lightweight Foamed Concrete (LFC) is proposed. The measurement is carried out using a frequency domain approach to determine the Lightweight Foamed Concrete dielectric constant from a frequency range of 150 kHz to 8 GHz. The relations of the dielectric, density, and compressive strength of lightweight foamed concrete has been investigated, and the correlation models have been formulated using Jonscher fitting model. The results show a close estimation with the relative error controlled within 2.6% and 6.0% for the density and the compression strength computation, respectively. The proposed frequency domain method is shown to be effective and can be applied to determine the mechanical attributes as well as the electrical properties of the LFC simultaneously. John Wiley and Sons Inc 2021-08 Article PeerReviewed Lee, Kim Yee and Phua, Yeong Nan and Lim, Siong Kang and You, Kok Yeow and Cheng, Ee Meng (2021) Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach. Microwave and Optical Technology Letters, 63 (8). pp. 2153-2159. ISSN 0895-2477 http://dx.doi.org/10.1002/mop.32875 DOI:10.1002/mop.32875 |
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TK Electrical engineering. Electronics Nuclear engineering Lee, Kim Yee Phua, Yeong Nan Lim, Siong Kang You, Kok Yeow Cheng, Ee Meng Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
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A fast and nondestructive method for predicting density and compressive strength of Lightweight Foamed Concrete (LFC) is proposed. The measurement is carried out using a frequency domain approach to determine the Lightweight Foamed Concrete dielectric constant from a frequency range of 150 kHz to 8 GHz. The relations of the dielectric, density, and compressive strength of lightweight foamed concrete has been investigated, and the correlation models have been formulated using Jonscher fitting model. The results show a close estimation with the relative error controlled within 2.6% and 6.0% for the density and the compression strength computation, respectively. The proposed frequency domain method is shown to be effective and can be applied to determine the mechanical attributes as well as the electrical properties of the LFC simultaneously. |
format |
Article |
author |
Lee, Kim Yee Phua, Yeong Nan Lim, Siong Kang You, Kok Yeow Cheng, Ee Meng |
author_facet |
Lee, Kim Yee Phua, Yeong Nan Lim, Siong Kang You, Kok Yeow Cheng, Ee Meng |
author_sort |
Lee, Kim Yee |
title |
Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
title_short |
Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
title_full |
Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
title_fullStr |
Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
title_full_unstemmed |
Determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
title_sort |
determination of density and compressive strength of lightweight foamed concrete using frequency domain approach |
publisher |
John Wiley and Sons Inc |
publishDate |
2021 |
url |
http://eprints.utm.my/id/eprint/94038/ http://dx.doi.org/10.1002/mop.32875 |
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1726791471762243584 |