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STATISTICAL ANALYSIS ON THE EFFECTS OF NATURAL WEATHERING ON THE PERFORMANCE OF INTUMESCENT COATINGS USING ANOVA

机译:自然风化对膨胀型膨胀型膨胀型膨胀型膨胀性造型统计分析

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Intumescent fire retardant coatings are one of the most frequent passive fire protection methods used for structures in case of wildland or Wildland-Urban Interface (WUI) fires. When exposed to a heating source, they form a thick layer of carbon-rich char on the exterior surface of a structure and can delay or event prevent the structure's ignition. These coatings are economical and easy to apply. However, the performance of such systems is affected by weathering, as aging affects the intumescence mechanism and fire protection effectiveness. Moreover, coatings may act as an additional source of fuel to the structures after weathering. In this study, three intumescent coatings were selected from the market to compare their fire protection performance after weathering. A bench-scale cone calorimeter was used to collect data for fifteen different classes of samples. The classes include the samples which were exposed to natural weathering for 0, 3, 6 and 12 months in two different weathering orientations (north and south). Then, the specimens were randomly picked up from each class and were tested using the cone calorimeter. The Analysis of Variance (ANOVA) method as a statistical tool was then employed to analyze the differences among the classes. First, the uncoated and coated specimens were compared. In all cases, coatings showed a significant protection. Then, coated specimens with different weathering intervals were compared. The results showed that not all coatings preserved their protective effectiveness after 3 months of weathering exposure. In some cases, there were no statistical evidence of performance difference between coated and uncoated specimens just after 3 months.
机译:膨胀型阻燃涂层是用于荒地或野蛮城市界面(WUI)火灾的结构中最常用的被动防火方法之一。当暴露于加热源时,它们在结构的外表面上形成厚的碳富碳炭层,并且可以延迟或事件防止结构的点火。这些涂层经济且易于施用。然而,这种系统的性能受风险影响,因为老化会影响吹动机制和防火效果。此外,涂层可以作为耐候后的结构用作额外的燃料来源。在这项研究中,从市场中选择了三种膨胀型涂料,以比较风化后的防火性能。使用台阶锥热计用于收集十五种不同样品的数据。该类包括在两种不同风化取向(南北)的0,3,6和12个月内暴露于自然风化的样品。然后,从每个阶级随机拾取标本,并使用锥形量热计进行测试。然后采用作为统计工具的方差(ANOVA)方法分析来分析类别的差异。首先,比较未涂覆和涂覆的标本。在所有情况下,涂料显示出显着的保护。然后,比较具有不同风化间隔的涂层标本。结果表明,在风化暴露3个月后,并非所有涂料都保留了它们的保护效果。在某些情况下,在3个月后涂层和未涂层​​标本之间没有统计证据。

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