This paper reports the findings of a study of four particle packing models used to proportion the mix constituents (solid particles) of concrete to produce a minimum voids ratio (or maximum packing density). The models have been compared using laboratory tests and published data. The basic mathematics of the models is discussed, particularly how each model defines the particle size distribution of the solid particles. The models have been applied to both the aggregate (sand and gravel) and the cement phase (PC, PFA, GGBS and limestone fines) and the estimated voids ratio compared with that measured in the laboratory. It was found that the models give broadly the same output and suggest similar combinations of materials to give the minimum v...
The Conference proceedings' website is located at www.fce.vutbr.cz/ekr/pbe/pbe2012_proceedings.pdfA ...
The annual production of Portland cement, estimated at 3.4 billion tons in 2011, is responsible for ...
This thesis describes in detail the development of a Theory of Particle Mixtures by which certain as...
This paper reports the findings of a study of four particle packing models used to proportion the mi...
This paper reports the findings of a study of the filler content required in concrete to produce a m...
Concrete is the most used manmade material in the world. Concrete is a composite material mainly mad...
The mixture proportioning for various types of concrete requires thorough understanding of the mater...
The behavior of concrete is affected by the size, distribution of the voids, the porosity and of the...
Physical particle packing is becoming a hot topic in concrete technology as more and more types of g...
The first objective of this work was to find a model for predicting void content of two-gradation mi...
The importance of studying the behaviour and properties of concrete can be highlighted by considerin...
Concrete performance is strongly affected by the particle packing degree since it determines the dis...
Particle packing optimization is a process of selecting optimum aggregate proportions that result in...
The Conference proceedings' website is located at www.fce.vutbr.cz/ekr/pbe/pbe2012_proceedings.pdfA ...
The annual production of Portland cement, estimated at 3.4 billion tons in 2011, is responsible for ...
This thesis describes in detail the development of a Theory of Particle Mixtures by which certain as...
This paper reports the findings of a study of four particle packing models used to proportion the mi...
This paper reports the findings of a study of the filler content required in concrete to produce a m...
Concrete is the most used manmade material in the world. Concrete is a composite material mainly mad...
The mixture proportioning for various types of concrete requires thorough understanding of the mater...
The behavior of concrete is affected by the size, distribution of the voids, the porosity and of the...
Physical particle packing is becoming a hot topic in concrete technology as more and more types of g...
The first objective of this work was to find a model for predicting void content of two-gradation mi...
The importance of studying the behaviour and properties of concrete can be highlighted by considerin...
Concrete performance is strongly affected by the particle packing degree since it determines the dis...
Particle packing optimization is a process of selecting optimum aggregate proportions that result in...
The Conference proceedings' website is located at www.fce.vutbr.cz/ekr/pbe/pbe2012_proceedings.pdfA ...
The annual production of Portland cement, estimated at 3.4 billion tons in 2011, is responsible for ...
This thesis describes in detail the development of a Theory of Particle Mixtures by which certain as...