The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)

The external surfaces of finish wear and disintegrate under weathering conditions. It is known that the layer in which the amplitude of temperature and surface moisture decreases twice is intensively affected. When investigating the surface durability, it would be useful to call this layer an activ...

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Main Author: Vytautas Barkauskas
Format: Article
Language:English
Published: Vilnius Gediminas Technical University 2001-02-01
Series:Journal of Civil Engineering and Management
Subjects:
-
Online Access:http://journals.vgtu.lt/index.php/JCEM/article/view/9163
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spelling doaj-227d883812574c10bd09a5bd7f4638fa2021-07-02T03:06:15ZengVilnius Gediminas Technical UniversityJournal of Civil Engineering and Management1392-37301822-36052001-02-017110.3846/13921525.2001.10531699The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)Vytautas Barkauskas0Institute of Architecture and Construction, ASI , Tunelio g. 60, LT-3035 , Kaunas , Lithuania The external surfaces of finish wear and disintegrate under weathering conditions. It is known that the layer in which the amplitude of temperature and surface moisture decreases twice is intensively affected. When investigating the surface durability, it would be useful to call this layer an active layer. Its durability is proportional to the square of the layer thickness and to the ratio of inner energy (meant for resistantial influence). Usually the dispersion of physical and mechanical properties in materials and samples is calculated by statistic methods. Analytically it is possible to assume that any product or sample consists of many hypothetic microvolumes demonstrating certain physical and mechanical properties. According to our tests carried out during years, the dispersion of these microvolumes is similar to that of products or samples and may be estimated by statistic curves. First Published Online: 30 Jul 2012 http://journals.vgtu.lt/index.php/JCEM/article/view/9163-
collection DOAJ
language English
format Article
sources DOAJ
author Vytautas Barkauskas
spellingShingle Vytautas Barkauskas
The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
Journal of Civil Engineering and Management
-
author_facet Vytautas Barkauskas
author_sort Vytautas Barkauskas
title The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
title_short The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
title_full The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
title_fullStr The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
title_full_unstemmed The content of the active layer external surface resistance to weathering/Aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
title_sort content of the active layer external surface resistance to weathering/aktyviojo išorinio paviršiaus patvarumo aplinkos poveikiams turinys (kiekis)
publisher Vilnius Gediminas Technical University
series Journal of Civil Engineering and Management
issn 1392-3730
1822-3605
publishDate 2001-02-01
description The external surfaces of finish wear and disintegrate under weathering conditions. It is known that the layer in which the amplitude of temperature and surface moisture decreases twice is intensively affected. When investigating the surface durability, it would be useful to call this layer an active layer. Its durability is proportional to the square of the layer thickness and to the ratio of inner energy (meant for resistantial influence). Usually the dispersion of physical and mechanical properties in materials and samples is calculated by statistic methods. Analytically it is possible to assume that any product or sample consists of many hypothetic microvolumes demonstrating certain physical and mechanical properties. According to our tests carried out during years, the dispersion of these microvolumes is similar to that of products or samples and may be estimated by statistic curves. First Published Online: 30 Jul 2012
topic -
url http://journals.vgtu.lt/index.php/JCEM/article/view/9163
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