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dc.contributor.authorRetamal, Facundo Atuel
dc.contributor.authorRougier, Viviana Carolina
dc.date.accessioned2021-08-17T03:07:59Z
dc.date.accessioned2022-02-22T12:17:17Z
dc.date.available2021-08-17T03:07:59Z
dc.date.available2022-02-22T12:17:17Z
dc.date.issued2021-07
dc.identifier.isbn978-958-52071-8-9
dc.identifier.issn2414-6390
dc.identifier.otherhttp://laccei.org/LACCEI2021-VirtualEdition/meta/FP58.html
dc.identifier.urihttp://dx.doi.org/10.18687/LACCEI2021.1.1.58
dc.identifier.urihttp://axces.info/handle/10.18687/20210101_58
dc.description.abstractFoamed cellular concrete (FCC) is basically composed by a cement paste or mortar with intentionally incorporated air bubbles and it presents interesting characteristics for the construction industry. To study and understand the material structural behavior, mathematical models have been developed in order to predict its compressive strength. To this end, various researchers have adapted models designed for normal-density (NC) concrete, for considering and include the particular characteristics of FCF. Balshin’s Strength-Porosity Model is a case of model adapted from NC to FCC, because of the nature of the latter material is strongly influenced by the void or pore volume. In this work, an experimental campaign is carried to obtain the constants of this model, using the expression of theoretical porosity developed by Nambiar and Ramamurthy for FCC. In this way, a resistance prediction model is calibrated with the materials and methods used in the local industry. Also, the relationship between the material strength and density is evaluated, and a mathematical equation is developed for quantifying it. An experimental campaign was carried out, the aforementioned constants were determined and compared with those obtained in previous investigations of other authors. The results are shown in tables and graphs. Conclusions are drawn.en_US
dc.language.isoEnglishen_US
dc.publisherLACCEI Inc.en_US
dc.rightsLACCEI License
dc.rights.urihttps://laccei.org/blog/copyright-laccei-papers/
dc.subjectmathematical modelen_US
dc.subjectprediction of resistanceen_US
dc.subjectmodel calibrationen_US
dc.subjectfoamed cellular concreteen_US
dc.titleCalibration of a Strength Prediction Model for Foamed Cellular Concrete
dc.typeArticleen_US
dc.description.countryArgentinaen
dc.description.institutionUTN FRCUen
dc.description.trackEngineering Design, Engineering Materials and Engineering Innovationen
dc.journal.referatopeerReview


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  • 2021 LACCEI - Virtual Edition
    The Nineteenth LACCEI International Multi-Conference for Engineering, Education Caribbean Conference for Engineering and Technology.

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