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火灾影响下纤维水泥板外墙覆层承载能力的降低

Reduction of Load Capacity of Fiber Cement Board Facade Cladding under the Influence of Fire.

作者信息

Schabowicz Krzysztof, Sulik Paweł, Zawiślak Łukasz

机构信息

Faculty of Civil Engineering, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

Building Research Institute (Instytut Techniki Budowlanej), Filtrowa 1, 00-611 Warszawa, Poland.

出版信息

Materials (Basel). 2021 Apr 3;14(7):1769. doi: 10.3390/ma14071769.

Abstract

The paper analyzes the issue of the reduction of load capacity in fiber cement board during a fire. Fiber cement boards were put under the influence of fire by using a large-scale facade model. Such a model is a reliable source of knowledge about the behavior of facade cladding and the way fire spreads. One technical solution for external walls-a ventilated facade-is gaining popularity and is used more and more often. However, the problem of the destruction during a fire of a range of different materials used in external facade cladding is insufficiently recognized. For this study, the authors used fiber cement boards as the facade cladding. Fiber cement boards are fiber-reinforced composite materials, mainly used for facade cladding, but also used as roof cladding, drywall, drywall ceiling and floorboards. This paper analyzes the effect of fire temperatures on facade cladding using a large-scale facade model. Samples were taken from external facade cladding materials that were mounted on the model at specific locations above the combustion chamber. Subsequently, three-point bending flexural tests were performed and the effects of temperature and the integrals of temperature and time functions on the samples were evaluated. The three-point bending flexural test was chosen because it is a universal method for assessing fiber cement boards, cited in Standard EN 12467. It also allows easy reference to results in other literature.

摘要

本文分析了纤维水泥板在火灾中承载能力降低的问题。通过使用大型立面模型,使纤维水泥板受到火灾影响。这样的模型是了解立面覆层行为和火灾蔓延方式的可靠知识来源。外墙的一种技术解决方案——通风立面——越来越受欢迎且使用得越来越频繁。然而,对外墙覆层中使用的一系列不同材料在火灾中破坏问题的认识还不够充分。在本研究中,作者使用纤维水泥板作为立面覆层。纤维水泥板是纤维增强复合材料,主要用于立面覆层,但也用作屋顶覆层、干墙板、干墙天花板和地板。本文使用大型立面模型分析火灾温度对立面覆层的影响。从安装在燃烧室上方特定位置的模型上的外墙覆层材料中取样。随后,进行了三点弯曲挠曲试验,并评估了温度以及温度与时间函数的积分对样品的影响。选择三点弯曲挠曲试验是因为它是评估纤维水泥板的通用方法,在标准EN 12467中有所引用。它也便于参考其他文献中的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac93/8038406/d8f4144cab2a/materials-14-01769-g001.jpg

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