PERFORMANCE ASSESSMENT OF ACI, ACIIAND ACIII ADHESIVE MORTARS FOR COA-TING SYSTEMS
COMPARATIVO DE DESEMPENHO DE ARGAMASSAS COLANTES ACI, ACII E ACIII: UMA CARACTERIZAÇÃO FÍSICO-MECÂNICA DAS PROPRIEDADES
DOI:
https://doi.org/10.29183/2447-3073.MIX2026.v12.n1.%25pKeywords:
aderência, Argamassa colante, Caracterização, Projeto, Resistência mecânicaAbstract
This study analyzes and compares the performance of three types of adhesive mortars from the same manufacturer: ACI, ACII, and ACIII, focusing on their physical-mechanical properties. After granulometric evaluation, the mortars were prepared under the same conditions and assessed in both the fresh state (slip, spreadability, and density) and the hardened state (pull-off strength, tensile strength, compressive strength, and elastic modulus). The primary objective is to identify and characterize performance differences among the mortar types. The results indicate that there are not significant differences between the mortars in the fresh state. However, in the hardened state, the mechanical properties show variations inversely related to the granulometry of the mortars. This detailed analysis enhances the understanding of material behavior and guides the selection of adhesive mortars according to the requirements set by the designer.
References
ANDIÇ, Ö.; RAMYAR, K.; KORKUT, Ö. Effect of fly ash addition on the mechanical properties of tile adhesive. Construction and Building Materials, v. 19, n. 7, p. 564–569, 1 set. 2005.
ASKELAND, Donald R.; WRIGHT, Wendelin J. Ciencia e ingeniería de materiales. Septima ed. México, D.F: Cengage Learning, 2016.
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 13276: Argamassa para assentamento de paredes e tetos – Determinação do índice de consistência. Rio de Janeiro: ABNT, 2005. Available at:em: .
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 13278: argamassa para assentamento de paredes e tetos -Determinação da densidade de massa e do teor de ar incorporado. 2005a.
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 13279: argamassa para assentamento e revestimento de paredes e tetos - Determinação da resistência à tração na flexão e à compressão. 2005b.
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 14081 Argamassa colante industrializada para assentamento de placas cerâmicas, 2012.
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 13755: Revestimentos cerâmicos de fachadas e paredes externas com utilização de argamassa colante – Projeto, execução, inspeção e aceitação – Procedimento. Rio de Janeiro: ABNT, 1996.
ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. NBR 8522-1: Concreto – Determinação dos módulos de elasticidade e de deformação – Parte 1: Módulos estáticos à compressão. Rio de Janeiro: ABNT, 2021.
ASTM INTERNATIONAL. C136/C136M-19: Standard test method for sieve analysis of fine and coarse aggregates. West Conshohocken, PA: ASTM International, 1 dez. 2019. Available at: http://www.astm.org/cgi-bin/resolver.cgi?C136C136M-19
ASTM INTERNATIONAL. E1252-98(2021): Practice for general techniques for obtaining infrared spectra for qualitative analysis. West Conshohocken, PA: ASTM International, 1 abr. 2021. Available at: http://www.astm.org/cgi-bin/resolver.cgi?E1252-98R21
BÖKE, Hasan et al. Quantification of CaCO3-CaSO3·0.5H 2O-CaSO4·2H2O mixtures by FTIR analysis and its ANN model. Materials Letters, v. 58, n. 5, p. 723–726, fev. 2004.
CALLISTER, William D.; RETHWISCH, David G. Materials Science and Engineering: An Introduction. 9th ed. Hoboken, NJ: Wiley, 2014.
CARASEK, Helena. Aderência de argamassas à base de cimento Portland a substratos porosos: avaliação dos fatores intervenientes e contribuição ao estudo do mecanismo da ligação. São Paulo, 2002. Tese (Doutorado) – Escola Politécnica, Universidade de São Paulo.
COSTA, M. R. M. M.; PEREIRA, E.; PILEGGI, R. G.; CINCOTTO, M. A. Study of the influential factors on the rheological behavior of adhesive mortar available in the market. IBRACON Structures and Materials Journal, v. 6, n. 3, p. 399‑413, 24 fev. 2013.
DVORKIN, Leonid; DUŻY, Patrycja; BRUDNY, Karolina; CHOIŃSKA, Marta; KORNIEJENKO, Kinga. Adhesive Strength of Modified Cement–Ash Mortars. Energies, v. 15, n. 12, 1 jun. 2022.
KUDO, Elisabete Kioko. Caracterização reológica de argamassas colantes. São Paulo, 2004. Tese (Doutorado) – Escola Politécnica, Universidade de São Paulo.
FERREIRA, Ruan L. S. et al. Effects of Particle Size Distribution of Standard Sands on the Physical-Mechanical Properties of Mortars. Materials, v. 16, n. 2, 1 jan. 2023.
GADO, R. A. The feasibility of recycling marble & granite sludge in the polymer-modified cementitious mortars Part A: In polymer-modified cementitious adhesive mortar. Process Safety and Environmental Protection, v. 159, p. 978–991, 1 mar. 2022.
HADDAD, Lucimar Dias de Oliveira et al. Influence of particle shape and size distribution on coating mortar properties. Journal of Materials Research and Technology, v. 9, n. 4, p. 9299–9314, 2020.
JENNI, A. et al. Changes in microstructures and physical properties of polymer-modified mortars during wet storage. Cement and Concrete Research, v. 36, n. 1, p. 79–90, jan. 2006.
KOSMATKA, Steven H.; KERKHOFF, Beatrix.; PANARESE, William C. Design and control of concrete mixtures. [S.l.]: Portland Cement Association, 2002.
KUDO, Elisabete Kioko; CARDOSO, Fábio Alonso; PILEGGI, Rafael Giuliano. Avaliação de argamassas colantes por reometria rotacional. Ambiente Construído, v. 13, n. 2, p. 125–137, 2013.
LIAO, Yingdi et al. Particle size effect of oyster shell on mortar: Experimental investigation and modeling. Materials, v. 14, n. 22, 1 nov. 2021.
LIMA, Lucas Pereira et al. Behavior in the fresh state and in the hardened state of alkali-activated fly ash-based mortars cured at ambient temperature. Revista Materia, v. 27, n. 3, 2022.
MADEJOVÁ, J. FTIR techniques in clay mineral studies. Vibrational Spectroscopy, v. 31, n. 1, p. 1–10, 2003.
MEHTA, P. Kumar; MONTEIRO, Paulo J. M. Concrete: Microstructure, Properties, and Materials. 3rd ed. New York: McGraw-Hill, 2006.
MINDESS, Sidney; YOUNG, J. Francis; DARWIN, David. Concrete. 2nd ed. Upper Saddle River, NJ: Prentice Hall, 2003.
MOLLAH, M. Y. A. et al. A Fourier transform infrared spectroscopic investigation of the early hydration of Portland cement and the influence of sodium lignosulfonate. Cement and Concrete Research, v. 30, p. 267–273, 2000.
NEVILLE, A. Properties of Concrete. Third ed. Great Britain: Pitman Books, 1981.
NEVILLE, Adam. Concrete. First ed. London: Thomas Telford, 2006.
RICE, R. W. Porosity of Ceramics: Properties and Applications. Boca Raton: CRC Press, 1998.
RICE, R. W. Relation of Tensile Strength–Porosity Effects in Ceramics to Porosity Dependence of Young’s Modulus and Fracture Energy, Porosity Character and Grain Size. Materials Science and Engineering, v. 56, p. 61–68, 1982.
SALUSTIO, J.; TORRES, S. M.; MELO, A. C.; SILVA, Â. J. C. E.; AZEVEDO, A. C.; TAVARES, J. C.; LEAL, M. S.; DELGADO, J. M. P. Q. Mortar Bond Strength: A Brief Literature Review, Tests for Analysis, New Research Needs and Initial Experiments. Materials, v. 15, n. 6, 2022.
SILVA, Ana; DE BRITO, Jorge; GASPAR, Pedro Lima. Green Energy and Technology Methodologies for Service Life Prediction of Buildings With a Focus on Façade Claddings. [S.l.: S.n.]. Disponível em: <http://www.springer.com/series/8059>.
TAYLOR, H. F. W. Cement chemistry. 2nd. ed. Heron Quay, London: Thomas Telford, 1998.
TIKKANEN, Johanna; PENTTALA, Vesa; CWIRZEN, Andrzej. Mineral powder concrete - Effects of powder content on concrete properties. Magazine of Concrete Research, v. 63, n. 12, p. 893–903, 1 dez. 2011.
OTANI, Henrique Alves Lucas Barcelos. Determinação dos módulos de elasticidade do concreto empregando a Técnica de Excitação por Impulso. São Carlos: Sonelastic, [2020?]. Available at: .
WETZEL, A.; ZURBRIGGEN, R.; HERWEGH, M. Spatially resolved evolution of adhesion properties of large porcelain tiles. Cement and Concrete Composites, v. 32, n. 5, p. 327–338, 1 maio 2010.
Downloads
Published
Issue
Section
License
Copyright (c) 2026 Betina Pituco, Valentina Candela-Rengifo, Gihad Mohamad, Alexandre Silva de Vargas, José Pedro Marquezan de Oliveira

This work is licensed under a Creative Commons Attribution 4.0 International License.
Creative Commons Copyright Notice
Attribution 4.0 International