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基于暴露温度的钢结构防火材料行为与性能分析

Behavior and Performance Analysis of Fire Protection Materials Applied to Steel Structures According to Exposed Temperatures.

作者信息

Kang Hyun, Kweon Oh-Sang

机构信息

Korea Institute of Civil Engineering & Building Technology (KICT), 182-64 Mado-ro, Mado-myeon, Hwaseong-si 18544, Gyeonggi-do, Republic of Korea.

出版信息

Materials (Basel). 2025 Mar 14;18(6):1285. doi: 10.3390/ma18061285.

Abstract

Spray-on fireproofing materials (SFRMs) and intumescent paints are commonly used to enhance the fire resistance of steel structures. Despite extensive studies on the performance of SFRMs and intumescent paints, there remains a significant lack of research on the material properties of certified products used in real-world applications, especially according to exposed temperatures. In this study, heating experiments were conducted to investigate the material properties of two widely used certified materials in Korea, focusing on their application thickness and exposure temperature. The experiments set target temperatures ranging from room temperature to 900 °C in increments of 100 °C. Additionally, various material properties, such as changes in shape and the insulation performance of the SFRM and intumescent paint, were observed at each temperature. Notably, the moisture content and discoloration depth of the SFRM displayed a consistent trend under different exposure temperatures, a material property that has not been previously reported. Furthermore, the insulation performance of the two materials differed by approximately 17% to 25% compared to an uncoated specimen exposed to the same temperature. The findings on the properties of SFRMs and intumescent paint relative to the exposure temperature presented in this study can serve as valuable data for selecting materials to improve fire resistance performance across various construction sites in the future. Additionally, they can act as key reference data in the diagnostic evaluation process for assessing the impact of fire on steel structures.

摘要

喷涂防火材料(SFRMs)和膨胀型防火涂料常用于提高钢结构的耐火性。尽管对SFRMs和膨胀型防火涂料的性能进行了广泛研究,但对于实际应用中使用的认证产品的材料特性,尤其是根据暴露温度的研究仍存在显著不足。在本研究中,进行了加热实验,以研究韩国广泛使用的两种认证材料的材料特性,重点关注其应用厚度和暴露温度。实验设定的目标温度范围为室温至900℃,以100℃为增量。此外,在每个温度下观察了各种材料特性,如SFRM和膨胀型防火涂料的形状变化和隔热性能。值得注意的是,SFRM的含水量和变色深度在不同暴露温度下呈现出一致的趋势,这是此前未曾报道过的材料特性。此外,与暴露在相同温度下的未涂层试件相比,这两种材料的隔热性能相差约17%至25%。本研究中关于SFRMs和膨胀型防火涂料相对于暴露温度的特性研究结果,可为未来在各个建筑工地选择提高耐火性能的材料提供有价值的数据。此外,它们还可作为评估火灾对钢结构影响的诊断评估过程中的关键参考数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec30/11943921/bd6d5f57df67/materials-18-01285-g001.jpg

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