On the effect of the duration of operation of metal structures on their fire resistance

M. M. Shakhabov, A. Sivenkov
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Abstract

Introduction. The solution of the issue of assessing the fire resistance limit of metal structures under the influence of prolonged mechanical stress and environmental factors, as well as an objective assessment of their behavior in fire conditions should be inextricably linked with the aging process, leading to changes in the physical and chemical, mechanical properties of metals. The analysis of scientific works in the field of fire resistance of metal structures indicates that the aging process of metals is not actually taken into account when considering the issue of assessing the limits of fire resistance of these structures. It is not clear to what extent the aging factor of metals can influence the behavior of metal structures in fire conditions. In this regard, it is undoubtedly necessary to develop scientific ideas about the behavior of metal structures in fire conditions, taking into account the duration of their operation, the relationship of this behavior with processes occurring under prolonged exposure to environmental factors, as well as obtaining new experimental data on the limits of fire resistance of metal structures of various service life. Aims and purposes. Formation of scientific opinion on the peculiarities of the influence of the duration of operation of metal structures on their fire resistance. Methods. The article used the method of analytical research based on the results of the analysis of works in the field of metal aging processes, taking into account the prolonged impact of mechanical stress and various environmental factors. Results and their discussion. Based on the results of the analysis of theoretical and experimental studies, it is suggested that the fire resistance of metal structures may decrease as a result of their prolonged operation. The possibility of reducing the fire resistance of metal structures is based on the research results of many authors, whose works revealed characteristic changes in the chemical composition, structural elements, properties of metals as a result of prolonged operation of metal structures. Conclusion. The result of the analysis of scientific papers shows that the long-term operation of metal structures and the impact of various environmental factors can lead to a decrease in the limits of their fire resistance. The possibility of reducing the fire resistance of metal structures as a result of their long-term operation, which was not previously taken into account in regulatory documents and the calculation methodology for assessing fire resistance, is considered. Keywords: fire resistance, fire resistance limit, metals, steel structures, service life, aging.
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金属结构使用年限对其耐火性能的影响
介绍。解决金属结构在长时间机械应力和环境因素影响下的耐火极限评定问题,客观评价其在火灾条件下的行为,应与老化过程密不可分,老化过程导致金属的物理、化学、机械性能发生变化。对金属结构耐火极限的科学研究表明,在考虑金属结构耐火极限的评定问题时,金属的老化过程实际上并没有被考虑在内。目前尚不清楚金属的老化因素在多大程度上影响金属结构在火灾条件下的行为。在这方面,无疑有必要发展关于金属结构在火灾条件下的行为的科学思想,考虑到它们的运行时间,这种行为与长期暴露于环境因素下发生的过程的关系,以及获得关于不同使用寿命金属结构耐火极限的新实验数据。目标和目的。对金属结构运行时间对耐火性能影响的特殊性形成科学的认识。方法。本文采用分析研究的方法,在对工程领域的金属时效过程进行分析的基础上,考虑到机械应力的长期影响和各种环境因素。结果和讨论。理论分析和试验研究表明,金属结构的耐火性可能会因其长期使用而降低。降低金属结构耐火性能的可能性是基于许多作者的研究成果,他们的作品揭示了金属结构长期使用导致金属的化学成分、结构元素和性能发生的特征性变化。结论。科学论文的分析结果表明,金属结构的长期运行和各种环境因素的影响会导致其耐火极限的降低。考虑到由于金属结构的长期运行而降低其耐火性的可能性,这在以前的监管文件和评估耐火性的计算方法中没有考虑到。关键词:耐火性,耐火极限,金属,钢结构,使用寿命,老化
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