Cracks on ETICS along thermal insulation joints: case study and a pathology catalogue

S. Freitas, V. Freitas
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引用次数: 15

Abstract

Purpose – The purpose of this paper is to present a case study of cracks on external thermal insulation composite systems (ETICS) along the thermal insulation joints and the information available on the building pathology catalogue – PATORREB. The aim is to establish the methodology to study the cause of the pathology observed on a building which is located on the interior of Portugal based on in situ probing together with the analysis of hygrothermal and mechanical behaviour. Design/methodology/approach – An in situ analysis was performed to assess the causes. The hygrothermal dynamic behaviour of the wall was analysed with a numerical simulation advanced tool considering the climatic conditions, the characteristics of the thermal insulation plates as well as the support and finishing layer properties. Moreover, a qualitatively analysis of the mechanical behaviour, based on the bonding process, thermal insulation and exterior rendering properties was performed. Findings – It was concluded that the insulation properties – thermal expansion coefficient and stiffness, the thermal expansion coefficient of the exterior rendering, together with adverse climatic conditions were critical for the appearance of cracks along the plate joints, particularly with spot bonding. The expansion and retraction stresses and the restrained movements of the components can result in bending moments, especially when the insulation material has a high stiffness value, which will create the crack on the rendering system. Originality/value – A combination between a hygrothermal and mechanical analysis of an ETICS pathology concerning the appearance of cracks with a subsequent integration into a building pathology catalogue.
沿绝热接头的ETICS裂缝:案例研究和病理目录
目的-本文的目的是介绍一个沿保温接缝的外保温复合系统(ETICS)裂缝的案例研究,并提供建筑病理目录- PATORREB上的信息。目的是建立一种方法来研究在位于葡萄牙内陆的建筑物上观察到的病理原因,该建筑物基于原位探测以及湿热和机械行为分析。设计/方法/方法-进行现场分析以评估原因。利用先进的数值模拟工具,综合考虑气候条件、保温板的特性、支撑层和饰面层的性能,对墙体的热湿动力特性进行了分析。此外,基于粘接过程、隔热和外观渲染性能,对力学行为进行了定性分析。研究结果-得出的结论是,隔热性能-热膨胀系数和刚度,外部渲染的热膨胀系数,以及不利的气候条件对板接缝裂缝的出现至关重要,特别是在点焊时。构件的伸缩应力和受约束的运动会产生弯矩,特别是当保温材料具有较高的刚度值时,这将在渲染系统上产生裂缝。原创性/价值-对裂缝外观的ETICS病理学进行湿热分析和力学分析的结合,并随后整合到建筑病理学目录中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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