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城市和海洋环境中外墙外保温复合系统的耐久性评估

Durability assessment of external thermal insulation composite systems in urban and maritime environments.

作者信息

Parracha J L, Borsoi G, Veiga R, Flores-Colen I, Nunes L, Viegas C A, Moreira L M, Dionísio A, Gomes M Glória, Faria P

机构信息

LNEC, National Laboratory for Civil Engineering, Av. do Brasil, 101, 1700-066 Lisbon, Portugal; CERIS, DECivil, Instituto Superior Técnico, University of Lisbon, Av. Rovisco Pais, 1049-001 Lisbon, Portugal.

LNEC, National Laboratory for Civil Engineering, Av. do Brasil, 101, 1700-066 Lisbon, Portugal; CERIS, DECivil, Instituto Superior Técnico, University of Lisbon, Av. Rovisco Pais, 1049-001 Lisbon, Portugal.

出版信息

Sci Total Environ. 2022 Nov 25;849:157828. doi: 10.1016/j.scitotenv.2022.157828. Epub 2022 Aug 4.

Abstract

External Thermal Insulation Composite Systems (ETICS) are multilayer solutions which provide an enhanced thermal performance to the building envelope. However, significant anomalies can be detected on ETICS facades, in some cases shortly after the application of these systems. This study intends to evaluate and compare the durability of six commercially available ETICS after two years of outdoor exposure at both urban and maritime conditions in Portugal. The systems were characterized by means of non-destructive testing (i.e., visual and microscopic assessment, water transport properties, thermal conductivity, surface roughness), thus allowing to evaluate the performance loss throughout natural aging. The bio-susceptibility and aesthetic properties (color and gloss) were also investigated. Results showed that the performance and durability of the complete system is significantly affected by the rendering system formulation. The lime-based specimens obtained the highest rate of mold development after one year of aging in a maritime environment, becoming considerably darker and with lower surface gloss. Fungal analysis of this darkish stained area indicated the presence of mold species of the genera Alternaria, Didymella, Cladosporium and Epicoccum, and yeasts of the genera Vishniacozyma and Cystobasidium. An increase of both capillary water absorption and water vapor permeability was also registered for the aged lime-based specimens. Acrylic-based systems obtained lower capillary water absorption after aging and greater dirt deposition on their surfaces, especially in urban conditions. These systems had also higher color variation and surface gloss decrease and slightly higher mold growth, when compared with those aged in a maritime environment. Finally, no mold growth was detected on the silicate-based specimens after two years of aging. However, these specimens obtained higher capillary water absorption and lower vapor permeability after aging, possibly leading to moisture accumulation within the system. Results contribute towards the development of ETICS with enhanced performance and durability.

摘要

外墙外保温复合系统(ETICS)是多层解决方案,可为建筑围护结构提供增强的热性能。然而,在ETICS外墙表面可能会检测到明显的异常情况,在某些情况下,这些系统应用后不久就会出现。本研究旨在评估和比较六种市售ETICS在葡萄牙城市和海洋环境中户外暴露两年后的耐久性。通过无损检测(即视觉和微观评估、水传输特性、热导率、表面粗糙度)对这些系统进行表征,从而能够评估自然老化过程中的性能损失。还研究了生物敏感性和美学特性(颜色和光泽)。结果表明,整个系统的性能和耐久性受到抹灰系统配方的显著影响。在海洋环境中老化一年后,石灰基试件的霉菌生长率最高,颜色变得深得多,表面光泽度降低。对这个深色染色区域的真菌分析表明,存在链格孢属、双隔孢属、枝孢属和附球菌属的霉菌物种,以及威尼克酵母属和囊担子菌属的酵母。老化后的石灰基试件的毛细吸水率和水蒸气渗透率也有所增加。丙烯酸基系统老化后的毛细吸水率较低,但其表面有更多的污垢沉积,尤其是在城市环境中。与在海洋环境中老化的系统相比,这些系统的颜色变化更大,表面光泽度降低,霉菌生长也略高。最后,经过两年老化后,在硅酸盐基试件上未检测到霉菌生长。然而,这些试件老化后的毛细吸水率较高,水蒸气渗透率较低,这可能导致系统内部积水。研究结果有助于开发性能和耐久性更强的ETICS。

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