Portland cement paste performance when inert limestone filler is added as clinker replacement

Marginal information is available in the literature regarding the performance of Portland cement–based pastes when reducing clinker content with inert limestone fillers (ILSF) when the replacement is > 15%. In this research, six different blended Portland cements (BPCs) from two different brands...

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出版年:AIMS Materials Science
主要な著者: Andrés A. Torres-Acosta, Rafael A. Méndez-Páramo, Celene Arista-Perrusquía, Eduardo S. Herrera-Sosa, Samantha Reyes-Rodríguez
フォーマット: 論文
言語:英語
出版事項: AIMS Press 2025-03-01
主題:
オンライン・アクセス:https://www.aimspress.com/article/doi/10.3934/matersci.2025012
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author Andrés A. Torres-Acosta
Rafael A. Méndez-Páramo
Celene Arista-Perrusquía
Eduardo S. Herrera-Sosa
Samantha Reyes-Rodríguez
author_facet Andrés A. Torres-Acosta
Rafael A. Méndez-Páramo
Celene Arista-Perrusquía
Eduardo S. Herrera-Sosa
Samantha Reyes-Rodríguez
author_sort Andrés A. Torres-Acosta
collection DOAJ
container_title AIMS Materials Science
description Marginal information is available in the literature regarding the performance of Portland cement–based pastes when reducing clinker content with inert limestone fillers (ILSF) when the replacement is > 15%. In this research, six different blended Portland cements (BPCs) from two different brands were evaluated, all with loss of ignition (LOI) values ranging between 2% and 18%, estimating ILSF contents between 5% and 35%. The characterization of these BPCs was conducted through laboratory tests aimed at performance forecasting in the absence of their component proportions due to trademark secrecy. These tests included determining BPCs' fineness (or Blaine number, F), density (ρ), and LOI. Then, paste characterization was performed, including water content for paste normal consistency, initial and final setting times, determination of the luminosity coordinate *L from hardened paste specimens, and mortar compressive strength at 28 days. It was concluded that one way to overcome the misinformation about the composition of BPCs (clinker, pozzolans, or ILSF contents) is to obtain the LOI parameter, as it will help forecast the performance of new BPC formulations.
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spelling doaj-art-47b8a589f96d431c8ee57c052002d7dc2025-08-27T02:54:15ZengAIMS PressAIMS Materials Science2372-04842025-03-0112222424410.3934/matersci.2025012Portland cement paste performance when inert limestone filler is added as clinker replacementAndrés A. Torres-Acosta0Rafael A. Méndez-Páramo1Celene Arista-Perrusquía2Eduardo S. Herrera-Sosa3Samantha Reyes-Rodríguez4Tecnologico de Monterrey, School of Engineering and Science, Department of Sustainable Technologies and Civil, Epigmenio González 500, San Pablo, 76130 Santiago de Querétaro, Qro., MexicoTecnologico de Monterrey, School of Engineering and Science, Department of Sustainable Technologies and Civil, Epigmenio González 500, San Pablo, 76130 Santiago de Querétaro, Qro., MexicoTecnologico de Monterrey, School of Engineering and Science, Department of Sustainable Technologies and Civil, Epigmenio González 500, San Pablo, 76130 Santiago de Querétaro, Qro., MexicoTecnologico de Monterrey, School of Engineering and Science, Department of Sustainable Technologies and Civil, Epigmenio González 500, San Pablo, 76130 Santiago de Querétaro, Qro., MexicoTecnologico de Monterrey, School of Engineering and Science, Department of Sustainable Technologies and Civil, Epigmenio González 500, San Pablo, 76130 Santiago de Querétaro, Qro., MexicoMarginal information is available in the literature regarding the performance of Portland cement–based pastes when reducing clinker content with inert limestone fillers (ILSF) when the replacement is > 15%. In this research, six different blended Portland cements (BPCs) from two different brands were evaluated, all with loss of ignition (LOI) values ranging between 2% and 18%, estimating ILSF contents between 5% and 35%. The characterization of these BPCs was conducted through laboratory tests aimed at performance forecasting in the absence of their component proportions due to trademark secrecy. These tests included determining BPCs' fineness (or Blaine number, F), density (ρ), and LOI. Then, paste characterization was performed, including water content for paste normal consistency, initial and final setting times, determination of the luminosity coordinate *L from hardened paste specimens, and mortar compressive strength at 28 days. It was concluded that one way to overcome the misinformation about the composition of BPCs (clinker, pozzolans, or ILSF contents) is to obtain the LOI parameter, as it will help forecast the performance of new BPC formulations.https://www.aimspress.com/article/doi/10.3934/matersci.2025012limestoneportland cementclinkerpastessustainability
spellingShingle Andrés A. Torres-Acosta
Rafael A. Méndez-Páramo
Celene Arista-Perrusquía
Eduardo S. Herrera-Sosa
Samantha Reyes-Rodríguez
Portland cement paste performance when inert limestone filler is added as clinker replacement
limestone
portland cement
clinker
pastes
sustainability
title Portland cement paste performance when inert limestone filler is added as clinker replacement
title_full Portland cement paste performance when inert limestone filler is added as clinker replacement
title_fullStr Portland cement paste performance when inert limestone filler is added as clinker replacement
title_full_unstemmed Portland cement paste performance when inert limestone filler is added as clinker replacement
title_short Portland cement paste performance when inert limestone filler is added as clinker replacement
title_sort portland cement paste performance when inert limestone filler is added as clinker replacement
topic limestone
portland cement
clinker
pastes
sustainability
url https://www.aimspress.com/article/doi/10.3934/matersci.2025012
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