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DC Field | Value | Language |
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dc.contributor.author | Gonçalves, T. D. | pt_BR |
dc.contributor.author | Brito, V. | pt_BR |
dc.date.accessioned | 2016-05-05T09:28:11Z | pt_BR |
dc.date.accessioned | 2017-04-13T11:07:22Z | - |
dc.date.available | 2016-05-05T09:28:11Z | pt_BR |
dc.date.available | 2017-04-13T11:07:22Z | - |
dc.date.issued | 2016-10 | pt_BR |
dc.identifier.citation | Diaz Gonçalves, T., & Brito, V. (2016). Differential thermal expansion as a cause of salt decay: literature review, experiments, and modelling of micro and macro effects on Ançã limestone. Studies in Conservation, 1-19.DOI 10.1080/00393630.2016.1140860. | pt_BR |
dc.identifier.uri | https://repositorio.lnec.pt/jspui/handle/123456789/1008208 | - |
dc.description.abstract | Salt decay is one of the harshest, most frequent and more complex types of decay of porous materials in built heritage, including natural stones, ceramics and mortars. In this article, we address the mechanism of thermal expansion which is one of the least studied, yet most controversial, of those proposed over time to explain salt decay. We present a review of scientific literature on the topic, followed by a study of the effects of thermal expansion on a specific material, the well-known Ançã limestone. The study included experimental measurement of the linear thermal expansion coefficient of the Ançã, both in its natural state and with varying contents of sodium chloride, sodium sulphate or sodium nitrate. The results show that this coefficient: (i) is significantly higher when the stone is contaminated with salt; (ii) scales approximately with the amount of salt contained in the stone pores, regardless of the type of salt. Based on these results and on modelling of damage modes at the microscopic and macroscopic levels respectively, we conclude that thermal expansion can cause powdering, disaggregation or other types of decay consisting in internal loss of cohesion. However, it is not likely to cause exfoliation of salt loaded layers. | pt_BR |
dc.language.iso | eng | pt_BR |
dc.publisher | Taylor and Francis | pt_BR |
dc.relation | info:eu-repo/grantAgreement/FCT/3599-PPCDT/100553/PT | pt_BR |
dc.rights | openAccess | pt_BR |
dc.subject | Thermal expansion | pt_BR |
dc.subject | Soluble salts | pt_BR |
dc.subject | Powdering | pt_BR |
dc.subject | Exfoliation | pt_BR |
dc.subject | Ançã limestone | pt_BR |
dc.subject | Sodium chloride | pt_BR |
dc.subject | Sodium sulphate | pt_BR |
dc.subject | Sodium nitrate | pt_BR |
dc.subject | Disaggregation | pt_BR |
dc.title | Differential thermal expansion as a cause of salt decay: literature review, experiments and modelling of micro and macro effects on Ançã limestone | pt_BR |
dc.type | article | pt_BR |
dc.description.pages | 19p | pt_BR |
dc.description.comments | This work was performed under the research project DRYMASS (ref. PTDC/ECM/100553/2008) which is supported by national funds through the Fundação para a Ciência e a Tecnologia (FCT) and LNEC. The authors are grateful to Luís Nunes for his support on the thermal expansion and MIP measurements, José Costa for assisting in the preparation of the specimens, Kirsten Linnow for helping find the values of some coefficients of thermal expansion, Graça Tomé for her editorial suggestions and Andrea Hamilton for reviewing the article. Thanks are also due to the anonymous reviewers of this article, for their valuable comments. | pt_BR |
dc.description.sector | DM/NBPC | pt_BR |
dc.description.magazine | Studies in Conservation | pt_BR |
dc.contributor.peer-reviewed | SIM | pt_BR |
dc.contributor.academicresearchers | NAO | pt_BR |
dc.contributor.arquivo | SIM | pt_BR |
Appears in Collections: | DM/NMC - Comunicações a congressos e artigos de revista |
Files in This Item:
File | Description | Size | Format | |
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AM - Diaz Gonçalves and Brito (2016) Differential thermal expansion as a cause of salt decay. Literature review, experiments, and modelling of micro and macro effects on Ançã limestone.pdf | Postprint | 1.01 MB | Adobe PDF | View/Open |
autorização.pdf | Copyright | 3.26 MB | Adobe PDF | View/Open |
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