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Impact of Water-Repellent Products on the Moisture Transport Properties and Mould Susceptibility of External Thermal Insulation Composite Systems

机译:防水产物对外部隔热复合系统的水分运输性能和模具易感性的影响

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External Thermal Insulation Composite Systems (ETICS) are constructive solutions widely used to increase the thermal insulation in new and retrofitted buildings. However, these systems can present several anomalies due to their constant exposure to weathering agents and anthropic factors. Water is generally the major cause of degradation. Thus, the application of water-repellent products can minimize the appearance of anomalies and increase the durability of the systems. In this paper, acrylic-based and siloxane-based hydrophobic products were applied to ETICS, with the aim of assessing the compatibility, effectiveness, and durability of these products. The moisture transport properties and mould susceptibility were assessed through laboratory tests on untreated and treated specimens. The durability of the hydrophobic treatments was also evaluated through artificial aging tests (heat-cold and freeze-thaw cycles). Results show that the protection products generally decreased water absorption, slightly decreased the drying rate, and presented adequate water vapor permeability. After aging, the products still had reasonable effectiveness and, with one exception, improved the water vapor diffusion of the systems. Additionally, ETICS underwent an alteration in the finishing coat (possible modification of the porosity) due to the aging cycles. No clear linear correlation was found between the contact angle values and water absorption results, evidencing the influence of other factors related to the composition of the water-repellent products.
机译:外部隔热复合系统(ETICS)是广泛应用于新建和改装建筑物中保温的建设性解决方案。然而,由于它们的恒定暴露于耐候性和人体因子,这些系统可以提出若干异常。水通常是降解的主要原因。因此,防水产物的应用可以最大限度地减少异常的外观并增加系统的耐久性。本文将丙烯酸基和基于硅氧烷的疏水产品应用于EtiCS,目的是评估这些产品的相容性,有效性和耐用性。通过对未处理和处理的标本的实验室测试评估水分运输性能和模塑敏感性。还通过人工老化试验(热冷和冷冻循环)评估疏水处理的耐久性。结果表明,保护产品一般降低吸水率,略微降低干燥速率,并呈现充足的水蒸气渗透性。老化后,产品仍有合理的有效性,并且具有一个例外,改善了系统的水蒸气扩散。另外,由于老化循环,EtiCS经历了精加工涂层的改变(可能的孔隙率可能的修饰)。在接触角值和吸水结果之间没有发现明确的线性相关性,证明了与防水产物的组成有关的其他因素的影响。

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