Resistência à compressão do concreto autoadensável: Influência da atividade pozolânica do calcário e do basalto


Autoria(s): Piovezam, Igor André Rodrigues; Meleiro, Leandro Parras; Isa, Mario Morio
Contribuinte(s)

Universidade Estadual Paulista (UNESP)

Data(s)

27/05/2014

27/05/2014

01/12/2006

Resumo

This research studies the influence of the pozzolanic activity of the calcareous and basalt in the resistence behavior of the compressive strength of high performance self-compacting concrete (HPSCC). The selected aditives are the calcareous filler and basalt filler, for they are industrial residues helping that way the sustainable development. The paste of this concrete type is constituted of cement, silica fume, calcareous filler or basalt filler, water and superplasticizer additive. In this research the relationships water/cement are fixed in 0,40 kg/kg, silica fume/cement of 0,10 kg/kg and the relationships filler/cement and superplasticizer/cement are determined through of Marsh́s cone and mini-slump tests. The granular skeleton is gotten from a composition between quartzous sand and brita of basalt that presents the lesser index of emptinesses. The results show that the HPSCC with the addition of calcareous filler has greater compressive strength than what the HPSCC with addition of basalt filler in the ages of 7, 28 and 63 days. It is explained by the fact that the calcareous filler presents greater index of pozzolanic activity than the basalt filler. Besides that the relation water/fine for the HPSCC with calcareous filler is 0,27 l/kg whereas the HPSCC with basalt filler is of 0,29 l/kg.

Formato

95-100

Identificador

http://www.seer.ufu.br/index.php/cieng/article/view/536

Ciencia y Engenharia/ Science and Engineering Journal, v. 15, p. 95-100.

0103-944X

http://hdl.handle.net/11449/69402

2-s2.0-77953876896

2-s2.0-77953876896.pdf

Idioma(s)

por

Relação

Ciencia y Engenharia/ Science and Engineering Journal

Direitos

openAccess

Palavras-Chave #Compressive strength #Pozzolanic activity and sustainable development #Self-compacting concrete #Concrete types #Granular skeleton #Industrial residues #Pozzolanic activity #Research studies #Self compacting concrete #Slump test #Superplasticizers #Basalt #Fillers #Powders #Silica #Silica fume #Strategic planning #Sustainable development
Tipo

info:eu-repo/semantics/article