Behavior of Zn5Al hot-dip galvanized steel members under fire exposure

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY
T. Pinger, Mirabela Firan, Martin Mensinger
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Abstract

PurposeBased on the known positive effects of conventional hot-dip galvanizing under fire exposure and indicative results on zinc–aluminum coatings from smallscale tests, a series of tests were conducted on zinc-5% aluminum galvanized test specimens under fire loads to verify the previous positive findings under largescale boundary conditions.Design/methodology/approachThe emissivity of zinc-5% aluminum galvanized surfaces applied to steel specimens was determined experimentally under real fire loads and laboratory thermal loads in accordance with the normative specifications of the standard fire curve. Both large and smallscale specimens were used in this study. The steel grade and surface conditions of the specimens were varied for both test scenarios.FindingsLargescale tests on specimens with typical steel construction dimensions under fire loads showed that the surface emissivity of zinc-5% aluminum galvanized steel was significantly lower than that of the conventionally galvanized steel. Only minor influences from the weathering of the specimens and steel chemistry were observed. These results agree well with those obtained from smallscale tests. The design values of zinc-5% aluminum melt (Zn5Al) required for the structural fire design were proposed based on the obtained results.Originality/valueThe novel tests presented in this study are the first ones to study the behavior of zinc-5% aluminum galvanized largescale steel construction components under the influence of real fire exposure and their positive effect on the emissivity of steel components galvanized by this method. The results provide valuable insights and information on the behavior in the case of fire and the associated savings potential for steel construction.
Zn5Al 热浸镀锌钢构件在火灾暴露下的行为
目的根据已知的传统热浸镀锌在火灾暴露下的积极效果以及小规模试验对锌-铝涂层的指示性结果,对火灾荷载下的锌-5% 铝镀锌试样进行了一系列试验,以验证之前在大规模边界条件下的积极发现。本研究同时使用了大型和小型试样。研究结果在火灾荷载下对典型钢结构尺寸的试样进行的大型测试表明,锌含量为 5% 的镀铝钢材的表面发射率明显低于传统镀锌钢材的表面发射率。仅观察到试样风化和钢材化学性质的轻微影响。这些结果与小规模试验得出的结果非常吻合。原创性/价值本研究中提出的新试验首次研究了在真实火灾暴露影响下,锌-5% 铝镀锌大型钢建筑构件的行为,以及它们对采用这种方法镀锌的钢构件发射率的积极影响。研究结果为火灾情况下的行为以及钢结构的相关节约潜力提供了宝贵的见解和信息。
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
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