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Correlating the Performance of a Fire-Retardant Coating across Different Scales of Testing

机译:在不同的测试尺度上关联阻燃涂层的性能

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摘要

Material-scale tests involving milligrams of samples are used to optimize fire-retardant coating formulations, but actual applications of these coatings require them to be assessed with structural-scale fire tests. This significant difference in the scale of testing (milligrams to kilograms of sample) raises many questions on the relations between the inherent flammability and thermal characteristics of the coating materials and their “performance” at the structural scale. Moreover, the expected “performance” requirements and the definition of “performance” varies at different scales. In this regard, the pathway is not established when designing and formulating fire-retardant coatings for structural steel sections or members. This manuscript explores the fundamental relationships across different scales of testing with the help of a fire-protective system based on acrylic resin with a typical combination of intumescent additives, viz. ammonium polyphosphate, pentaerythritol, and expandable graphite. One of the main outcomes of this work dictates that higher heat release rate values and larger amounts of material participating in the pyrolysis process per unit time will result in a rapid rise in steel substrate temperature. This information is very useful in the design and development of generic fire-retardant coatings.
机译:涉及毫克样品的物质规模试验用于优化阻燃涂料配方,但这些涂层的实际应用要求它们用结构尺度火灾测试进行评估。测试规模的这种显着差异(毫克到千克样品)提出了关于涂层材料的固有易燃性和热特性之间的关系及其在结构规模的“性能”之间的关系。此外,预期的“性能”要求和“性能的定义”在不同的尺度上变化。在这方面,在设计和配制结构钢部分或构件的阻燃涂层时,不建立该途径。本手稿借助基于丙烯酸树脂的防火系统,促进丙烯酸树脂,探讨了促进型膨胀型膨胀剂,促进膨胀剂添加剂,探讨了不同尺度的基本关系。多磷酸铵,季戊四醇和可膨胀石墨。该工作的主要结果之一决定了每单位时间的较高的热释放速率值和参与热解过程的较大量将导致钢基材温度的快速上升。这些信息对于通用阻燃涂层的设计和开发非常有用。

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