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Evaluation of Spreading and Effectiveness of Injection Products against Rising Damp in Mortar/Brick Combinations

机译:灰浆/砖混组合中注射产品对上升湿气的扩散和效果评估

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摘要

Rising damp is one of the most recurrent and well-known hazards to existing buildings and monuments. Several types of intervention exist to tackle the problem. Among these, the creation of a damp-proof course against capillary rise by means of injection of chemical products is one of the most diffused methods, thanks to the relatively easy and cheap application. Despite positive results when applied under controlled conditions in laboratory, these interventions do not always deliver the desired result in practice. Several studies have shown varying degrees of success. Various factors, like the lack of homogeneity of the substrate and a high moisture and salt content may affect the effectiveness of treatments. Moreover, the type of substrate and the combination of materials with different pore size distribution influence the spreading and the effectiveness of chemical products. Since rising damp is a problem that is mainly manifested in masonry, that is usually composed of at least two materials, the last factor may be of great importance. The current paper reports the results of a research on the transport of chemical injection products in relatively small mortar/brick combinations. Since no easy to perform test method for small combined specimens, giving results within a short time, was available, a special test method was developed. The effect of the interface between brick and mortar on the transport of the products was studied by the application of several injection products and creams. The tested products include pore filling and water repellent products and products in water as well as in organic solvent. The obtained results show clear differences in spreading and effectiveness in the different substrates and between products in organic solvent and water based ones, as well as between creams and liquid products. The results show that water based products can easily be transported through the mortar joint, differently from what occurs with products in an organic solvent. This is the consequence of the different transport mechanisms of water based products and products in organic solvent in water filled pores.
机译:潮湿的上升是现有建筑物和古迹中最经常发生的危害之一。存在几种类型的干预措施来解决该问题。在这些方法中,由于相对容易和便宜的应用,通过注入化学产品来形成防止毛细管上升的防潮层是最分散的方法之一。尽管在受控条件下在实验室中应用时取得了积极的成果,但这些干预措施在实践中并不总是能提供理想的结果。多项研究显示出不同程度的成功。各种因素(例如底物缺乏均质性和高水分和盐分含量)可能会影响治疗效果。而且,基材的类型和孔径分布不同的材料的组合会影响化学产品的铺展和有效性。由于上升的湿气是一个主要表现在砌体中的问题,通常至少由两种材料组成,因此最后一个因素可能非常重要。本论文报道了在相对较小的灰浆/砖混物中运输化学注射产品的研究结果。由于没有针对小型组合试样的易于执行的测试方法,无法在短时间内给出结果,因此开发了一种特殊的测试方法。通过使用几种注射产品和乳膏,研究了砖和灰浆之间的界面对产品运输的影响。被测试的产品包括毛孔填充和防水产品,以及在水中以及在有机溶剂中的产品。获得的结果表明,在不同的基质中以及在有机溶剂和水基溶剂之间的产品之间,以及在乳膏和液体产品之间的分散和有效性方面,存在明显差异。结果表明,与有机溶剂中的产品不同,水基产品可以轻松地通过灰浆接缝运输。这是水基产品和产品在充满水的孔隙中在有机溶剂中的运输机制不同的结果。

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