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Effects of weathering on performance of intumescent coatings for structure fire protection in the wildland-urban interface.

机译:风化对在野外-城市界面的结构型防火用膨胀型涂料性能的影响。

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摘要

The objective of this study was to investigate the effects of weathering on the performance of intumescent fire-retardant coatings on wooden products. The weathering effects included primary (solar irradiation, moisture, and temperature) and secondary (environmental contaminants) parameters at various time intervals.;Wildland urban interface (WUI) fires have been an increasing threat to lives and properties. Existing solutions to mitigate the damages caused by WUI fires include protecting the structures from ignition and minimizing the fire spread from one structure to another. These solutions can be divided into two general categories: active fire protection systems and passive fire protection systems. Passive systems are either using pre-applied wetting agents (water, gel, or foam) or adding an extra layer (composite wraps or coatings). Fire-retardant coating treatment methods can be divided into impregnated (penetrant) and intumescent categories. Intumescent coatings are easy to apply, economical, and have a better appearance in comparison to other passive fire protection methods, and are the main focus of this study.;There have been limited studies conducted on the application of intumescent coatings on wooden structures and their performance after long-term weathering exposure. The main concerns of weathering effects are: 1) the reduction of ignition resistance of the coating layer after weathering; and 2) the fire properties of coatings after weathering since coatings might contribute as a combustible fuel and assist the fire growth after ignition.;Three intumescent coatings were selected and exposed to natural weathering conditions in three different time intervals. Two types of tests were performed on the specimens: a combustibility test consisted of a bench-scale performance evaluation using a Cone Calorimeter, and a thermal decomposition test using Simultaneous Differential Scanning Calorimetry (DSC) and Thermogravimetric Analysis (TGA) method (also known as SDT). For each coating type and weathering period, three different radiative heat flux levels were used in the combustibility tests. Data obtained from the tests, including flammability and thermal properties, were gathered, analyzed, and compared to non-weathered specimens.;The results revealed visible effects of weathering on pre (and up to)-ignition flammability and intumescent properties, especially decreases in Time-to-Ignition (TTI), Time-to-Intumescence (tintu.), and (maximum) Intumescence Height (Hintu.) values in weathered specimens. These results showed that the ignition resistance of the coating layers decreased after weathering exposure. On the other hand, the obtained results from weathered specimens for the post-ignition flammability properties, especially Peak Heat Release Rate (PHRR) and Effective Heat of Combustion (EHC) did not show a significant difference in comparison to the non-weathered samples. These results demonstrated that the weathered coating layer would not likely to act as an additional combustible fuel to increase fire spread.
机译:这项研究的目的是研究风化对木质产品膨胀型防火涂料性能的影响。风化作用包括在不同时间间隔的主要(太阳辐射,湿度和温度)和次要(环境污染物)参数。荒野城市界面(WUI)火灾对生命和财产的威胁日益增加。减轻由WUI火灾造成的损害的现有解决方案包括保护结构免于着火,并最大程度地减少从一个结构到另一个结构的火灾蔓延。这些解决方案可分为两大类:主动防火系统和被动防火系统。被动系统要么使用预先施加的润湿剂(水,凝胶或泡沫),要么添加额外的一层(复合包裹物或涂层)。阻燃涂料的处理方法可分为浸渍(渗透)和膨胀型。与其他被动防火方法相比,膨胀型涂料易于应用,经济并且具有更好的外观,并且是本研究的主要重点。;关于在木质结构及其结构上使用膨胀型涂料的研究很少。长期风化暴露后的性能。耐候性的主要问题是:1)耐候性降低了涂层的耐燃性; 2)耐候性高的涂料的防火性能,因为涂料可能起可燃燃料的作用,并有助于点火后火势的增长。对样本进行了两种类型的测试:可燃性测试包括使用锥形量热仪进行的台式性能评估,以及使用同时差示扫描量热法(DSC)和热重分析(TGA)方法进行的热分解测试(也称为SDT)。对于每种涂层类型和风化时间,可燃性测试中使用了三种不同的辐射热通量水平。收集,分析和测试了从测试获得的数据,包括可燃性和热性能,并将其与未风化的标本进行了比较;结果表明,风化对预燃(及直至)点火易燃性和膨胀特性有明显的影响,尤其是在不燃的情况下。风化样品的起燃时间(TTI),起泡时间(tintu。)和(最大)起泡高度(Hintu。)值。这些结果表明,暴露于风化后,涂层的耐火性降低。另一方面,从风化标本获得的点火后可燃性,特别是峰值放热率(PHRR)和有效燃烧热(EHC)的结果与非风化标本相比没有显着差异。这些结果表明,风化的涂层不太可能充当增加可燃性的附加可燃燃料。

著录项

  • 作者

    Bahrani, Babak.;

  • 作者单位

    The University of North Carolina at Charlotte.;

  • 授予单位 The University of North Carolina at Charlotte.;
  • 学科 Materials science.;Wood sciences.;Polymer chemistry.
  • 学位 M.S.
  • 年度 2015
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:00

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