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Influence of Polymer Modification on the Microstructure of Shielding Concrete
by
Piotrowski, Tomasz
, Garbacz, Andrzej
, Zalegowski, Kamil
in
Atoms & subatomic particles
/ Cement hydration
/ Compressive strength
/ Concrete mixing
/ Construction industry
/ Dispersions
/ Energy
/ Grain size
/ Hydrogen
/ Image analysis
/ Magnetic properties
/ Mechanical properties
/ Methods
/ Microstructure
/ Parameter modification
/ Polymers
/ Radiation
/ Shielding
/ Tensile strength
/ Tessellation
2020
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Influence of Polymer Modification on the Microstructure of Shielding Concrete
by
Piotrowski, Tomasz
, Garbacz, Andrzej
, Zalegowski, Kamil
in
Atoms & subatomic particles
/ Cement hydration
/ Compressive strength
/ Concrete mixing
/ Construction industry
/ Dispersions
/ Energy
/ Grain size
/ Hydrogen
/ Image analysis
/ Magnetic properties
/ Mechanical properties
/ Methods
/ Microstructure
/ Parameter modification
/ Polymers
/ Radiation
/ Shielding
/ Tensile strength
/ Tessellation
2020
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Do you wish to request the book?
Influence of Polymer Modification on the Microstructure of Shielding Concrete
by
Piotrowski, Tomasz
, Garbacz, Andrzej
, Zalegowski, Kamil
in
Atoms & subatomic particles
/ Cement hydration
/ Compressive strength
/ Concrete mixing
/ Construction industry
/ Dispersions
/ Energy
/ Grain size
/ Hydrogen
/ Image analysis
/ Magnetic properties
/ Mechanical properties
/ Methods
/ Microstructure
/ Parameter modification
/ Polymers
/ Radiation
/ Shielding
/ Tensile strength
/ Tessellation
2020
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Influence of Polymer Modification on the Microstructure of Shielding Concrete
Journal Article
Influence of Polymer Modification on the Microstructure of Shielding Concrete
2020
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Overview
In this paper an analysis of the influence of polymer modification on the microstructure, shielding properties against neutrons, and compressive strength of heavy-weight magnetite concrete is carried out. The modifications involve the addition of acrylic or epoxy dispersions as well as micro- or/and macrofibers. A computer image analysis method is used to evaluate the microstructure of concretes and parameters of pore structure are calculated; these parameters include relative volume fraction, relative specific surface area, and pore arrangement ratios, including a proprietary ratio based on Voronoi tessellation. An assessment of significance of differences between stereological parameters of reference concrete and polymer modified concretes, as well as the impact of polymer form (dispersion or fibers) on shielding properties and compressive strength is carried out using Student’s t-test. The results show that except for the effect of the addition of both polypropylene micro- and macrofibers on the relative volume of pores, all other modifications result in statistically significant changes in the values of stereological parameters. Nevertheless, it is shown that neither polymer dispersions nor fibers have a statistically significant impact on shielding properties, but that they do influence compressive strength.
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