Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance
The article discusses methods for obtaining building heat and sound insulating composite material based on gypsum with high resistance to water. An additional characteristic is considered - the water resistance index, in which the role of material strength in the wet state is enhanced. The proposed...
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doaj-b3111881aa7b4aaf8a21038ababcd7222020-11-25T03:11:51ZengUniversity NorthTehnički Glasnik1846-61681848-55882020-01-011428993Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water ResistanceVolodimir Kersh0Andriy Kolesnikov1Mikola Hlitsov2Sergіi Gedulyan*3Odessa State Academy of Civil Engineering and Architecture, Didrihsona str. 4, Odessa 65029, UkraineOdessa State Academy of Civil Engineering and Architecture, Didrihsona str. 4, Odessa 65029, UkraineOdessa State Academy of Civil Engineering and Architecture, Didrihsona str. 4, Odessa 65029, UkraineOdessa State Academy of Civil Engineering and Architecture, Didrihsona str. 4, Odessa 65029, UkraineThe article discusses methods for obtaining building heat and sound insulating composite material based on gypsum with high resistance to water. An additional characteristic is considered - the water resistance index, in which the role of material strength in the wet state is enhanced. The proposed characteristic is used to optimize the heat and sound insulating composition based on gypsum. The material contains matrix gypsum-cement-ash binder and a mixture of aggregates. The result of the planned experiment shows that the water resistance index more adequately reflects the strength of the composite in the wet state compared to the softening coefficient. An optimization of the complex properties of the composite is given in accordance with its intended purpose. As a result of the study, an optimal waterproof composition with improved thermal insulation and sound insulation characteristics was obtained.https://hrcak.srce.hr/file/346953experimental statistical modelinggypsum-containing compositehierarchical optimizationsoftening coefficientwater resistance index |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Volodimir Kersh Andriy Kolesnikov Mikola Hlitsov Sergіi Gedulyan* |
spellingShingle |
Volodimir Kersh Andriy Kolesnikov Mikola Hlitsov Sergіi Gedulyan* Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance Tehnički Glasnik experimental statistical modeling gypsum-containing composite hierarchical optimization softening coefficient water resistance index |
author_facet |
Volodimir Kersh Andriy Kolesnikov Mikola Hlitsov Sergіi Gedulyan* |
author_sort |
Volodimir Kersh |
title |
Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance |
title_short |
Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance |
title_full |
Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance |
title_fullStr |
Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance |
title_full_unstemmed |
Thermal and Acoustic Insulating Gypsum Composite Material with Improved Water Resistance |
title_sort |
thermal and acoustic insulating gypsum composite material with improved water resistance |
publisher |
University North |
series |
Tehnički Glasnik |
issn |
1846-6168 1848-5588 |
publishDate |
2020-01-01 |
description |
The article discusses methods for obtaining building heat and sound insulating composite material based on gypsum with high resistance to water. An additional characteristic is considered - the water resistance index, in which the role of material strength in the wet state is enhanced. The proposed characteristic is used to optimize the heat and sound insulating composition based on gypsum. The material contains matrix gypsum-cement-ash binder and a mixture of aggregates. The result of the planned experiment shows that the water resistance index more adequately reflects the strength of the composite in the wet state compared to the softening coefficient. An optimization of the complex properties of the composite is given in accordance with its intended purpose. As a result of the study, an optimal waterproof composition with improved thermal insulation and sound insulation characteristics was obtained. |
topic |
experimental statistical modeling gypsum-containing composite hierarchical optimization softening coefficient water resistance index |
url |
https://hrcak.srce.hr/file/346953 |
work_keys_str_mv |
AT volodimirkersh thermalandacousticinsulatinggypsumcompositematerialwithimprovedwaterresistance AT andriykolesnikov thermalandacousticinsulatinggypsumcompositematerialwithimprovedwaterresistance AT mikolahlitsov thermalandacousticinsulatinggypsumcompositematerialwithimprovedwaterresistance AT sergíigedulyan thermalandacousticinsulatinggypsumcompositematerialwithimprovedwaterresistance |
_version_ |
1724652513489059840 |