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受膨胀型涂层保护的货架系统火灾行为的数值研究

Numerical Investigation of the Fire Behavior of Storage Rack Systems Protected by Intumescent Coating.

作者信息

Cirpici Burak Kaan, Orhan Suleyman Nazif, Yazici Casim, Özkal Fatih Mehmet

机构信息

Department of Civil Engineering, Erzurum Technical University, 25050 Erzurum, Turkey.

Department of Construction, Ağrı İbrahim Çeçen University, 04400 Ağrı, Turkey.

出版信息

ACS Omega. 2022 Sep 28;7(40):36001-36008. doi: 10.1021/acsomega.2c05287. eCollection 2022 Oct 11.

Abstract

Using a finite element strategy, this study investigates the behavior of beam-to-column connections in storage rack systems exposed to high temperatures. The purpose of this research was to develop moment-rotation (-θ) curves after painting various structural members with varied configurations in order to evaluate the performance of intumescent-coated beams, uprights, and connectors, which are components of storage rack systems. Within the scope of this work, finite element analyses were carried out in two stages. First, thermal analyses were performed using the transient thermal analysis system of ANSYS Workbench software to estimate the ultimate temperatures of the beam, upright, and connector, which were painted with 1 mm thick paint and exposed to standard (ISO-834) fire. The results were then compared to the Eurocode 3 Part 1.2 with a satisfactory agreement. In the second stage of the analysis, a total of 9 possible alternative models were investigated in the static structural analysis system, reflecting the effect of applying fire protection to the different portions of the rack system. Since the most critical stress level is achieved around the connector tabs, it has been observed that protection of the connector in individual or binary conditions provides higher performance while protection of the beam causes divergent joint behavior. Additionally, comparison of fully protected and unprotected conditions presents an increment of more than 7% on the joint's ultimate moment capacity and initial stiffness, which is an explicit contribution of the intumescent coating to fire resistance.

摘要

本研究采用有限元策略,研究了存储货架系统中梁柱连接在高温下的性能。本研究的目的是在对各种结构构件进行不同配置的涂漆后,绘制弯矩-转角(-θ)曲线,以评估作为存储货架系统组件的膨胀型涂层梁、立柱和连接件的性能。在这项工作的范围内,有限元分析分两个阶段进行。首先,使用ANSYS Workbench软件的瞬态热分析系统进行热分析,以估算涂有1毫米厚油漆并暴露于标准(ISO-834)火灾中的梁、立柱和连接件的最终温度。然后将结果与欧洲规范3第1.2部分进行比较,结果令人满意。在分析的第二阶段,在静态结构分析系统中研究了总共9种可能的替代模型,反映了对货架系统不同部分应用防火保护的效果。由于在连接件翼片周围达到最关键的应力水平,已观察到在单个或二元条件下对连接件进行保护可提供更高的性能,而对梁进行保护会导致节点行为发散。此外,完全保护和未保护条件的比较表明,节点的极限弯矩承载力和初始刚度提高了7%以上,这明确体现了膨胀型涂层对耐火性的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e90/9558700/cfcfc00782ca/ao2c05287_0001.jpg

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