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首页> 外文期刊>International journal of structural integrity >Influence of the thickness of intumescent paint in the position of steels (fire safety)
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Influence of the thickness of intumescent paint in the position of steels (fire safety)

机译:膨胀型涂料的厚度对钢材位置的影响(防火)

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摘要

Purpose - The purpose of this paper is to analyze a new structural design applied in industrial frames using two type of steels (S275 and fire resistant (FR)) with different mechanical resistance against fire. To do it, the authors have taken into account variables such as intrinsic metallic design, span length, intumescent paint thickness, and fire time exposure, which offers information about new scenarios of design in industry. Design/methodology/approach - The key methodology followed has taken into account a modeling program that uses the following variables: 25 and 35 m of span, 45 and 60 fire exposure times, and seven different intumescent paint thickness. An optimum structural design has been evaluated by discretization of each scenario with the particular type of steel, S275 and FR. The obtained approach could be a good guideline for future designs. Findings - The results and analysis have shown a very good and valid idea of a new structural typology using optimum intumescent paint thickness into the final design of the industrial frame considering that it has two different types of steel. It is in realty a handicap since usually mechanical engineers employ structural steel without paying attention to this new feature. Practical implications - Cheaper structural designs could be obtained using the two different types of steel considering the proper positioning into the full building. Originality/value - The validity of design of two types of steel plus intumescent paint in building construction has been shown, and this study will encourage designers to use it, in particular in buildings with high fire risk.%Coating; Steel structures; Temperature effects; High strength steel; Optimization models; Structural safety
机译:目的-本文的目的是分析一种适用于工业框架的新型结构设计,该结构使用两种类型的钢(S275和耐火(FR))具有不同的耐火机械性能。为此,作者考虑了诸如固有金属设计,跨度长度,膨胀型涂料厚度和着火时间暴露等变量,这些变量提供了有关工业设计新场景的信息。设计/方法/方法-遵循的主要方法已考虑了使用以下变量的建模程序:跨度25和35 m,火灾暴露时间45和60,以及七种不同的膨胀型涂料厚度。通过将每种情况与特定类型的钢S275和FR离散化,可以评估最佳的结构设计。所获得的方法可能是将来设计的良好指南。研究结果-结果和分析表明,对于具有两种不同类型钢的工业框架的最终设计,使用最佳膨胀型涂料厚度的新结构类型,是一种非常有效的构想。实际上,这是一个障碍,因为通常机械工程师使用结构钢而不注意此新功能。实际意义-考虑到正确放置在整个建筑物中的两种不同类型的钢,可以获得更便宜的结构设计。原创性/价值-已经证明了两种类型的钢加膨胀型涂料在建筑结构中的设计有效性,这项研究将鼓励设计师使用它,尤其是在火灾风险较高的建筑中。钢结构;温度影响;高强度钢;优化模型;结构安全

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  • 来源
    《International journal of structural integrity》 |2017年第3期|392-403|共12页
  • 作者单位

    Department of Mechanical Engineering,University of the Basque Country (UPV/EHU), Leioa Vizcaya, Spain;

    Departamento de Tecnobgia Ekctronica de Sistemas y Automdtica,Universidad de Cantabria, Santander, Spain;

    Department of Mechanical Engineering,University of the Basque Country (UPV/EHU), Leioa Vizcaya, Spain;

    Department of Mechanical Engineering,University of the Basque Country (UPV/EHU), Leioa Vizcaya, Spain;

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