Effect of additives on the compressive strength and setting time of a Portland cement

Improvements in strength and setting time of Portland cements (PC) are needed to enhance their performance as endodontic and load bearing materials. This study sought to enhance the compressive strength and setting time of a PC by adding one of the following additives: 20% and 30% poly-methylmethacr...

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Main Authors: Desirée Freitas Mryczka Machado, Luiz Eduardo Bertassoni, Evelise Machado de Souza, Janaina Bertoncelo de Almeida, Rodrigo Nunes Rached
Format: Article
Language:English
Published: Sociedade Brasileira de Pesquisa Odontológica 2010-06-01
Series:Brazilian Oral Research
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242010000200006
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spelling doaj-7bba48133722443db6dad0df1a96f7092020-11-25T00:15:28ZengSociedade Brasileira de Pesquisa Odontológica Brazilian Oral Research1806-83242010-06-0124215816410.1590/S1806-83242010000200006Effect of additives on the compressive strength and setting time of a Portland cementDesirée Freitas Mryczka MachadoLuiz Eduardo BertassoniEvelise Machado de SouzaJanaina Bertoncelo de AlmeidaRodrigo Nunes RachedImprovements in strength and setting time of Portland cements (PC) are needed to enhance their performance as endodontic and load bearing materials. This study sought to enhance the compressive strength and setting time of a PC by adding one of the following additives: 20% and 30% poly-methylmethacrylate (PMMA), 20% and 30% irregular and spherical amalgam alloys, and 10% CaCl2. The control consisted of unreinforced PC specimens. Setting time was determined using a Gillmore apparatus according to standardized methods while compressive strength was measured using a universal testing machine after 21 hours or 60 days of water storage. Data were analyzed by ANOVA, Tukey and Games-Howell tests (&#945; = 5%). All additives significantly decreased both initial and final setting times as compared with the PC-control (p < .05). 30% PMMA and 30% irregular alloy had the lowest values of initial setting time. 30% irregular alloy also produced the lowest values of final setting time while 30% spherical alloy yielded the highest (p < .05). No differences were detected between the compressive strength values of 21 hours and 60 days. While 10% CaCl2, 20% and 30% PMMA produced values significantly lower than the PC-control, 30% spherical alloy significantly improved the compressive strength of the reinforced PC (p < .05). In summary, all additives significantly reduced the setting time and 30% spherical amalgam alloy yielded a significant increase in compressive strength for the tested PC, which might represent an improved composition for PCs to expand their use as endodontic and potentially load bearing materials.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242010000200006Dental cementsEndodonticsCompressive strengthPhysical and chemical properties
collection DOAJ
language English
format Article
sources DOAJ
author Desirée Freitas Mryczka Machado
Luiz Eduardo Bertassoni
Evelise Machado de Souza
Janaina Bertoncelo de Almeida
Rodrigo Nunes Rached
spellingShingle Desirée Freitas Mryczka Machado
Luiz Eduardo Bertassoni
Evelise Machado de Souza
Janaina Bertoncelo de Almeida
Rodrigo Nunes Rached
Effect of additives on the compressive strength and setting time of a Portland cement
Brazilian Oral Research
Dental cements
Endodontics
Compressive strength
Physical and chemical properties
author_facet Desirée Freitas Mryczka Machado
Luiz Eduardo Bertassoni
Evelise Machado de Souza
Janaina Bertoncelo de Almeida
Rodrigo Nunes Rached
author_sort Desirée Freitas Mryczka Machado
title Effect of additives on the compressive strength and setting time of a Portland cement
title_short Effect of additives on the compressive strength and setting time of a Portland cement
title_full Effect of additives on the compressive strength and setting time of a Portland cement
title_fullStr Effect of additives on the compressive strength and setting time of a Portland cement
title_full_unstemmed Effect of additives on the compressive strength and setting time of a Portland cement
title_sort effect of additives on the compressive strength and setting time of a portland cement
publisher Sociedade Brasileira de Pesquisa Odontológica
series Brazilian Oral Research
issn 1806-8324
publishDate 2010-06-01
description Improvements in strength and setting time of Portland cements (PC) are needed to enhance their performance as endodontic and load bearing materials. This study sought to enhance the compressive strength and setting time of a PC by adding one of the following additives: 20% and 30% poly-methylmethacrylate (PMMA), 20% and 30% irregular and spherical amalgam alloys, and 10% CaCl2. The control consisted of unreinforced PC specimens. Setting time was determined using a Gillmore apparatus according to standardized methods while compressive strength was measured using a universal testing machine after 21 hours or 60 days of water storage. Data were analyzed by ANOVA, Tukey and Games-Howell tests (&#945; = 5%). All additives significantly decreased both initial and final setting times as compared with the PC-control (p < .05). 30% PMMA and 30% irregular alloy had the lowest values of initial setting time. 30% irregular alloy also produced the lowest values of final setting time while 30% spherical alloy yielded the highest (p < .05). No differences were detected between the compressive strength values of 21 hours and 60 days. While 10% CaCl2, 20% and 30% PMMA produced values significantly lower than the PC-control, 30% spherical alloy significantly improved the compressive strength of the reinforced PC (p < .05). In summary, all additives significantly reduced the setting time and 30% spherical amalgam alloy yielded a significant increase in compressive strength for the tested PC, which might represent an improved composition for PCs to expand their use as endodontic and potentially load bearing materials.
topic Dental cements
Endodontics
Compressive strength
Physical and chemical properties
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1806-83242010000200006
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