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Impact Verification of Aerogel Insulation Paint on Historic Brick Facades

机译:气凝胶绝缘油漆对历史砖门面的影响验证

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Increasing the sustainability of existing buildings is being motivated by reduction of their energy demands. It is the above all the building envelope and its refurbishment by substitution or addition of new materials that makes the opportunity for reduction of energy consumption. A special type of refurbishment is conservation of historical buildings. Preservation of historic buildings permits also application of innovative methods and materials in addition to the original materials if their effects are known and the gained experience ensures their beneficial effect. On the market, there are new materials with addition of silica aerogel in various forms of products. They are also potentially useful in conservation of monuments. However, the effects of aerogel application in these cases are not known. For refurbishment is commercially available additional fransparent insulation paint -Nansulate Clear Coat which is containing aerogel and can be used for structured surfaces such as bricks. A series of experiments examined the thermo-physical manifestation of an ultra-thin insulation coating of Nansulate Clear Coat containing silica aerogel on a brick facade. The experiments of active and passive thermography have observed effects of application on the small-scale samples of the brick facade of a protected historical building. Through a series of experiments were measured thermal insulation effect and influence on the aesthetic characteristics such as change in colour and gloss. The treated samples were compared to a reference/Results have shown no thermal-insulating manifestation of the recommended three layers of insulation paint. The three layers recommended by the manufacturer did not significantly affect the appearance of the brick facade. Color and gloss were not significantly changed. Experiments showed the absence of thermal insulation effect of Nansulate transparent triple coating. The thermal insulation effect could likely be reached by more layers of application, which, on the other hand may be unacceptable on the heritage conservation because of number of applications, time demand and financial costs. The effects of multiple layers on heritage attributes were not researched. Extrapolating the measured results, it can be expected that application of more than three layers of paint can significantly affect the aesthetic characteristics of the monument such as gloss and colours of historic brick facades. Due to specific material consistence of historic architecture and new insulation paint materials on the market, it is recommended to provide independent laboratory testing and on-site tests on facades of historic buildings in cooperation with the Monument Protection Board.
机译:提高现有建筑的可持续性是通过降低其能源需求的动机。它是上述所有建筑信封,通过替换或添加新材料的翻新,这使得能够减少能耗的机会。一种特殊类型的翻新是历史建筑的保护。如果众所周知,历史建筑物的保存还允许在原始材料外应用创新方法和材料,并且获得的经验确保其有益效果。在市场上,还有新材料加入各种形式的二氧化硅气凝胶。它们也可能在保护纪念碑方面很有用。然而,在这些情况下,气凝胶应用的影响是不知道的。为了翻新是商业上可获得的附加的额外的Frussperent绝缘涂料 - 含有气凝胶的透明涂层,可用于结构化表面,如砖。一系列实验检测了在砖门面上含有二氧化硅气凝胶的透明透明涂层的超薄绝缘涂层的热物理表现。主动和被动热成像的实验已经观察到应用对受保护的历史建筑的砖门面的小规模样本的影响。通过一系列实验是测量绝热效果的热绝缘效果,对颜色和光泽变化等审美特性的影响。将处理的样品与参考/结果进行比较,显示出推荐的三层绝缘涂料的绝热性能。制造商推荐的三层没有显着影响砖门面的外观。颜色和光泽没有显着改变。实验表明,不存在透明三重涂层的隔热效果。由于应用,时间需求和财务成本,更多的应用层可能会达到更多层的应用程序,这可能是在遗产保护上不可接受的效果。未研究多层对遗产属性的影响。推断测量结果,可以预期施加超过三层涂料可以显着影响纪念碑的美学特征,如历史砖门面的光泽和颜色。由于历史建筑和新型保温涂料材料在市场上的特定材料,建议在与纪念碑保护委员会合作的历史建筑物外观上提供独立的实验室测试和现场测试。

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