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Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete

Minor-destructive (MDT) and non-destructive (NDT) techniques are not commonly used for masonry as they are complex and difficult to perform. This paper describes validation of the following methods: semi-non-destructive, non-destructive, and ultrasonic technique for autoclaved aerated concrete (AAC)...

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Autores principales: Jasiński, Radosław, Drobiec, Łukasz, Mazur, Wojciech
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6385005/
https://www.ncbi.nlm.nih.gov/pubmed/30691179
http://dx.doi.org/10.3390/ma12030389
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author Jasiński, Radosław
Drobiec, Łukasz
Mazur, Wojciech
author_facet Jasiński, Radosław
Drobiec, Łukasz
Mazur, Wojciech
author_sort Jasiński, Radosław
collection PubMed
description Minor-destructive (MDT) and non-destructive (NDT) techniques are not commonly used for masonry as they are complex and difficult to perform. This paper describes validation of the following methods: semi-non-destructive, non-destructive, and ultrasonic technique for autoclaved aerated concrete (AAC). The subject of this study covers the compressive strength of AAC test elements with declared various density classes of: 400, 500, 600, and 700 (kg/m(3)), at various moisture levels. Empirical data including the shape and size of specimens, were established from tests on 494 cylindrical and cuboid specimens, and standard cube specimens 100 mm × 100 mm × 100 mm using the general relationship for ordinary concrete (Neville’s curve). The effect of moisture on AAC was taken into account while determining the strength f(Bw) for 127 standard specimens tested at different levels of water content (w = 100%, 67%, 33%, 23%, and 10%). Defined empirical relations were suitable to correct the compressive strength of dry specimens. For 91 specimens 100 mm × 100 mm × 100 mm, the P-wave velocity c(p) was tested with the transmission method using the ultrasonic pulse velocity method with exponential transducers. The curve (f(Bw)–c(p)) for determining the compressive strength of AAC elements with any moisture level (f(Bw)) was established. The developed methods turned out to be statistically significant and can be successfully applied during in-situ tests. Semi-non-destructive testing can be used independently, whereas the non-destructive technique can be only applied when the developed curve f(bw)–c(p) is scaled.
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spelling pubmed-63850052019-02-23 Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete Jasiński, Radosław Drobiec, Łukasz Mazur, Wojciech Materials (Basel) Article Minor-destructive (MDT) and non-destructive (NDT) techniques are not commonly used for masonry as they are complex and difficult to perform. This paper describes validation of the following methods: semi-non-destructive, non-destructive, and ultrasonic technique for autoclaved aerated concrete (AAC). The subject of this study covers the compressive strength of AAC test elements with declared various density classes of: 400, 500, 600, and 700 (kg/m(3)), at various moisture levels. Empirical data including the shape and size of specimens, were established from tests on 494 cylindrical and cuboid specimens, and standard cube specimens 100 mm × 100 mm × 100 mm using the general relationship for ordinary concrete (Neville’s curve). The effect of moisture on AAC was taken into account while determining the strength f(Bw) for 127 standard specimens tested at different levels of water content (w = 100%, 67%, 33%, 23%, and 10%). Defined empirical relations were suitable to correct the compressive strength of dry specimens. For 91 specimens 100 mm × 100 mm × 100 mm, the P-wave velocity c(p) was tested with the transmission method using the ultrasonic pulse velocity method with exponential transducers. The curve (f(Bw)–c(p)) for determining the compressive strength of AAC elements with any moisture level (f(Bw)) was established. The developed methods turned out to be statistically significant and can be successfully applied during in-situ tests. Semi-non-destructive testing can be used independently, whereas the non-destructive technique can be only applied when the developed curve f(bw)–c(p) is scaled. MDPI 2019-01-26 /pmc/articles/PMC6385005/ /pubmed/30691179 http://dx.doi.org/10.3390/ma12030389 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jasiński, Radosław
Drobiec, Łukasz
Mazur, Wojciech
Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title_full Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title_fullStr Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title_full_unstemmed Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title_short Validation of Selected Non-Destructive Methods for Determining the Compressive Strength of Masonry Units Made of Autoclaved Aerated Concrete
title_sort validation of selected non-destructive methods for determining the compressive strength of masonry units made of autoclaved aerated concrete
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6385005/
https://www.ncbi.nlm.nih.gov/pubmed/30691179
http://dx.doi.org/10.3390/ma12030389
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