Measuring packing density and water demand of Portland cement and SCMs by the mixing energy method

Author:

Soto Nicolle Talyta Arriagada1ORCID,Macioski Gustavo1ORCID,Araújo Emanoel Cunha1ORCID,Hoppe Filho Juarez2ORCID,Klein Nayara Soares1ORCID

Affiliation:

1. Universidade Federal do Paraná, Brasil

2. Universidade Federal do Oeste da Bahia, Brasil

Abstract

Abstract Wet packing methods evaluate the packing density of fine materials through the determination of the apparent density and voids content of pastes with different water to solids (w/s) ratios. Its goal is to estimate the minimum water demand to achieve the maximum solids concentration in the mixture, a parameter applied to the mix design of cementitious composites based on particle packing theories. Since most methods based on apparent density are time-consuming and require a high volume of materials, this paper aims to evaluate the mixing energy method as an alternative for the wet packing method and to adapt it to be used for SCMs (supplementary cementitious materials). With a reduced time and material to perform the test, results demonstrate a better precision of the mixing energy due to its discrete measurement. The ideal water flow and initial volume of materials to perform the test on cement and SCMs are discussed.

Publisher

FapUNIFESP (SciELO)

Subject

General Medicine

Reference52 articles.

1. Properties of Fresh Concrete.;Powers T. C.,1968

2. Dispersão e empacotamento de partículas: Princípios e aplicações em processamento cerâmico.;Oliveira I. R.,2000

3. Influence of packing and dispersion of particles on the cement content of concretes;Damineli B. L.;Rev. IBRACON Estrut. Mater.,2017

4. Superfine cement for improving packing density, rheology and strength of cement paste;Chen J. J.;Cement Concr. Compos.,2012

5. Flow of gasses through beds of broken solids;Furnas C. C.;Bureau of Mines Bulletin,1929

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