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Impact of External Heat Insulation on Drying Process of Autoclaved Aerated Concrete Masonry Constructions

机译:外部隔热对高压灭菌混凝土砌体结构干燥过程的影响

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In the time when sustainable construction as well as cost saving on heating and cooling of buildings is one of the most important construction trends, it is important to acknowledge the possibilities of application of construction materials with high heat insulation parameters and the ways in which these parameters can be obtained. Autoclaved aerated concrete (AAC) is a load bearing construction material, which has high heat insulation parameters, although it has one significant disadvantage. If the AAC masonry construction has high moisture content, it loses its heat insulation properties. This is the reason why it is important to detect the humidity distribution throughout the cross section of the masonry elements in order to conduct the drying process of the AAC construction. Therefore, the question about non-destructive detection of humidity distribution throughout the cross section of the material arises. Humidity distribution throughout the cross section of AAC masonry constructions has a significant impact on its heat resistivity properties. Application of electrical impedance spectrometry (EIS) method for determination of humidity distribution throughout the cross section of AAC constructions has been a subject of research recently. The EIS method is an easily applicable non-destructive testing method for detection of the humidity distribution throughout the cross section of a construction. Research on the impact of the external heat insulation layer on the speed of humidity distribution changes is described in this paper.
机译:在可持续建筑和成本上的加热和冷却的成本上是最重要的建筑趋势之一,重要的是要承认建筑材料的应用以及高隔热参数的可能性以及这些参数的方式可以获得。高压灭菌的加气混凝土(AAC)是一种承载轴承建筑材料,具有高隔热参数,但它具有一个显着的缺点。如果AAC砌体结构具有高水分含量,则会失去其隔热性能。这就是为什么重要,以检测砖石元件的整个横截面的湿度分布,以便进行AAC结构的干燥过程。因此,出现了关于材料整个横截面的湿度分布的非破坏性检测的问题。在AAC砌体结构的整个横截面的湿度分布对其耐热性能具有显着影响。电阻抗光谱(EIS)方法在AAC结构的整个横截面中测定湿度分布的应用是最近研究的主题。 EIS方法是一种易于适用的非破坏性测试方法,用于检测结构的整个横截面的湿度分布。本文描述了对外部隔热层对湿度分布变化速度的影响。

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