Modified Gypsum in a Sentence
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The paper presents the results of research concerning the influence of micromaterials on the heat conductivity coefficient λ, specifically heat Cp and thermal diffusivity a of modified gypsum and geopolymer.
In particular, the optimal compositions of the composite Bukhara and Samarkand gypsum binders modified with the addition of GLENIUM 27S and metallurgical slag, the area of optimal compositions of the gypsum binder have been determined, and the physical and technical properties of the modified gypsum composition have been studied.
It was shown that the applied additives decreased the compressive and bending strength of the modified gypsum.
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Improvement of plastering works quality and optimization of their cost is related to the development of modified gypsum-based compositions, the justified use of waste, and local building materials, which include a clay-gypsum binder.
This improves the mechanical strength, the average density of the modified gypsum stone and other physical and mechanical characteristics.
The modified gypsum plasters were obtained by addition of 1 and 3 wt.
0 wt% in this study) could best minimize AOR of the modified powder, leading to more smooth and voidless powder bed of gypsum powder than unmodified gypsum powder.
It was concluded that it is possible to use this method for a quick comparison of the photocatalytic activity of different types of modified gypsum materials.
Researchers have studied the thermal conductivity λ of modified gypsums.
The paper presents the experimental measurement of the thermal conductivity of the modified gypsum and the influence of added micro additives on this thermal parameter.
In this study, epoxy resin-based coating was developed for concrete reinforcement mild steel bar (rebar), and the corrosion behaviors of the uncoated rebar, single-cured epoxy resin-coated rebar, and indole butyric acid (IBA)-modified gypsum-containing epoxy resin-coated rebar were investigated in NaCl, CaCl2, and NaOH solution.