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Thermographic inspection of external thermal insulation systems with mechanical fixing

机译:机械固定的外部隔热系统的热成像检查

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An External Thermal Insulation Composite System (ETICS) kit may include anchors to mechanically fix the insulation product onto the wall. Using this option increases safety when compared to a simple bonded solution, however, it is more expensive and needs higher labor resources. The insulation product is then coated with rendering, which applied to the insulation material without any air gap. The rendering comprises one or more layers of coats with an embedded reinforcement. The most common multi-coat rendering system presents a base coat applied directly to the insulation product with a glass fiber mesh as reinforcement, followed by a second base coat, before a very thin coat (key coat) that prepares the surface to receive the finishing and decorative coat. The thickness of the rendering system may vary between around 5 to 10 mm. The higher thicknesses may be associated with a reinforcement composed by two layers of glass fiber mesh. The main purpose of this work is to apply infrared thermography (IRT) techniques to 2 ETICS solution (single or double layer of glass fiber mesh) and evaluate its capability in the detection of anchors. The reliability of IRT was tested using an ETICS configuration of expanded cork boards and a rendering system with one or two layers of glass fiber mesh. An active thermography approach was performed in laboratory conditions, in transmission and reflection mode. In the reflection mode halogen lamps and air heater were employed as the thermal stimulus. Air heater was also the source used in the transmission mode tests. The resulting data was processed in both time and frequency domains. In this last approach, phase contrast images were generated and studied.
机译:外部隔热复合系统(ETICS)套件可能包括用于将隔热产品机械固定到墙壁上的锚。与简单的绑定解决方案相比,使用此选项可提高安全性,但是,它更昂贵且需要更多的劳动力。然后,在绝缘产品上涂上抹灰,然后将抹灰涂在绝缘材料上而没有任何空气间隙。抹灰包括一层或多层带有嵌入式钢筋的涂层。最常见的多层涂漆系统是使用玻璃纤维网作为补强层直接涂在绝缘产品上的底涂层,然后再涂第二层底涂层,然后再涂一层很薄的涂层(基层涂层),以准备好表面接受整理和装饰外套。渲染系统的厚度可以在5到10毫米之间变化。较高的厚度可能与由两层玻璃纤维网组成的增强材料有关。这项工作的主要目的是将红外热成像(IRT)技术应用于2种ETICS解决方案(单层或双层玻璃纤维网),并评估其在锚固检测中的能力。使用扩展的软木板的ETICS配置和具有一层或两层玻璃纤维网的渲染系统对IRT的可靠性进行了测试。主动热成像方法是在实验室条件下以透射和反射模式执行的。在反射模式下,卤素灯和空气加热器被用作热刺激。空气加热器也是传输模式测试中使用的源。在时域和频域中都处理了所得数据。在最后一种方法中,生成并研究了相衬图像。

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