Vol 3, No 18 (2015)

Cover Page

Full Issue

Physicomechanical properties of bioresistant polymeric composites filled with quartz sand

Anoshkin V.S.

Abstract

Sample polymeric composites filled with quartz sand and containing modifying additives based on guanidine were made. The tests showed an improvement of the composites physicomechanical and operational properties and their durability in microbiological hostile environment.

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Changing of physicomechanical properties of polymeric composites depending on their filling rate and biocidal additive content

Myrksina O.N.

Abstract

The dependence of polymeric composite physicomechanical properties on the stone screening dust filling rate and the content of biocidal additive based on guanidine was studied. Sample construction composites of improved strength and operational properties were made.

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The effect of biocidal additive on physicomechanical properties of polymeric composites filled with dolomite powder

Bogatova K.S.

Abstract

Sample polymeric composites filled with dolomite powder modified by an additive based on guanidine were obtained. The tests showed an improvement of the composites physicomechanical and operational properties as well as their biological resistance.

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Physicomechanical properties of bioresistant polymeric composites filled with fine limestone powder

Borisova T.S.

Abstract

Sample polymeric composites filled with fine limestone powder and containing Teflex biocidal additives of were made. The tests demonstrated an improvement of the sample composites physicomechanical and operational properties as well as their durability in microbiological hostile environment.

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The effect of expanded clay fine powder filling rate on physicomechanical properties of polymeric composites with biocidal additive

Mashtayeva M.G.

Abstract

A number of tests were done to study the effect of the expanded clay fine powder filling rate on the physicomechanical properties of polymeric composites with Teflex biocidal additive. As a result, polymeric composite samples with improved physicomechanical and operational properties were made.

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Changing of physicomechanical properties of white cement polymeric composites depending on their filling rate

Sedoykin A.G.

Abstract

Sample polymeric composites filled with white cement and containing Teflex biocidal additives were made. The samples demonstrated improved physicomechanical and operational properties as well as increased durability in hostile environment.

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The properties of polymeric composites filled with granite fine powder and containing biocidal additive

Troyelnikov A.A.

Abstract

Sample structures filled with granite fine powder and containing a biocidal additive were made in order to study the filler and additive coeffect on polymeric composite properties. The optimum combination of the studied components improves the physicomechanical and operational properties of the composite materials as well as their durability.

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A study of properties of polymeric composites filled with portland сement and containing biocidal additive

Filatov A.V.

Abstract

Sample structures filled with Portland cement and containing a biocidal additive were made in order to study the coeffect of the filler and additive on the polymeric composite properties. The tests showed that a certain combination of the components improves physicomechanical and operational properties as well as durability of the polymeric composites.

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The effect of bromine-containing additives on bioproofness of construction composites

Smirnov V.F., Petryakov D.N., Khutorskoy S.V., Zakharova E.A.

Abstract

The study results of the effect of fungicidal additives on fungal resistance and fungicidal properties of building composites based on quicklime are presented. The findings reveal the most efficient additives to the lime composite structure.

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Construction materials based on lime with bromine-containing additives

Zakharova E.A., Smirnov V.F., Petryakov D.N.

Abstract

The negative effect of biological corrosion on operational properties of construction materials is studied. The positive effect of special additives on fungal resistance of lime composites is demonstrated.

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