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Identification of the Destruction Model of Ventilated Facade under the Influence of Fire

机译:火灾影响下的通风幕墙破坏模型识别

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摘要

Ventilated facades are becoming an increasingly popular solution for external part of walls in the buildings. They may differ in many elements, among others things: claddings (fiber cement boards, HPL plates, large-slab ceramic tiles, ACM panels, stone cladding), types of substructures, console supports, etc. The main part that characterizes ventilated facades is the use of an air cavity between the cladding and thermal insulation. Unfortunately, in some aspects they are not yet well-standardized and tested. Above all, the requirements for the falling-off of elements from ventilated facades during a fire are not precisely defined by, among other things, the lack of clearly specified requirements and testing. This is undoubtedly a major problem, as it significantly affects the safety of evacuation during a fire emergency. For the purposes of this article, experimental tests were carried out on a large-scale facade model, with two types of external-facade cladding. The materials used as external cladding were fiber cement boards and large-slab ceramic tiles. The model of large-scale test was 3.95 m × 3.95 m, the burning gas released from the burner was used as the source of fire. The test lasted one hour. The facade model was equipped with thermocouples. The cladding materials showed different behavior during the test. Large-slab ceramic tiles seemed to be a safer form of external cladding for ventilated facades. Unfortunately, they were destroyed much faster, for about 6 min. Large-slab ceramic tiles were destroyed within the first dozen or so minutes, then their destruction did not proceed or was minimal. In the case of fiber cement boards, the destruction started from the eleventh minute and increased until the end of the test. The authors referred the results of large-scale test to testing on samples carried out by other authors. The results presented the convergence of large-scale test with samples. External claddings was equipped with additional mechanical protection. The use of additional mechanical protection to maintain external cladding elements increases their safety but does not completely eliminate the problem of the falling-off of parts of the facade. As research on fiber cement boards and large-slab ceramic tiles presented, these claddings were a major hazard due to fall-off from facade.
机译:通风立面正逐渐成为建筑物墙体外部解决方案。它们可能在许多方面有所不同,其中包括:砌面(纤维水泥板,HPL板,大块瓷砖,ACM板,石材砌面),下部结构的类型,控制台支架等。通风正面的主要特征是在覆层和隔热层之间使用气腔。不幸的是,在某些方面,它们尚未得到很好的标准化和测试。最重要的是,除其他因素外,由于缺乏明确规定的要求和测试,对火灾中通风的立面掉落的元素的要求没有得到精确定义。无疑,这是一个主要问题,因为它极大地影响了发生火灾时疏散的安全性。出于本文的目的,在具有两种类型的外墙立面的大型立面模型上进行了实验测试。用作外包层的材料是纤维水泥板和大块瓷砖。大规模试验的模型为3.95 m×3.95 m,燃烧器释放的燃烧气体用作火源。测试持续了一个小时。立面模型配备了热电偶。在测试过程中,覆层材料表现出不同的行为。大块的瓷砖似乎是通风外墙的一种更安全的外部装饰形式。不幸的是,它们被摧毁的速度更快,持续了大约6分钟。大块的瓷砖在最初的大约十二分钟内被破坏,然后它们的破坏没有进行或很小。对于纤维水泥板,破坏从第11分钟开始,并一直持续到测试结束。作者将大规模测试的结果参考了其他作者进行的样品测试。结果表明大规模测试与样本的收敛性。外覆层配备了额外的机械保护。使用附加的机械保护来维护外部覆层元件可以提高其安全性,但不能完全消除外墙部分掉落的问题。根据对纤维水泥板和大块瓷砖的研究,这些立面是从立面脱落的主要危害。

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