A Comparative Study of Fire Code Classifications of Building Materials

Fire Pub Date : 2024-07-16 DOI:10.3390/fire7070252
Amirouche Sadaoui, Christian Dagenais, Pierre Blanchet
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Abstract

Whether noncombustible or combustible construction is used, the presence of combustible materials is likely to be used for various reasons, such as interior finishes, flooring, and insulation. Consequently, how regulations consider the degree of combustibility in their fire classifications will influence the level of fire safety provided in these buildings and the exchanges between all actors in the construction sector. In North America, the regulation of combustibility is primarily governed by surface flame spread assessed through the Steiner tunnel test. While there is a growing prevalence of calorimetric methods globally, their incorporation into North American building codes remains notably limited. Based on ISO 5660-1 cone calorimeter test results of twenty commercially available North American building materials, a comparative study was conducted between the Canadian flame spread classification and the classifications in Japan, New Zealand and the European Union (Euroclass). The tests and their limitations are described herein, as well as the conceptual frameworks. The results suggest that as materials’ combustibility levels increase, the level of agreement between classifications decreases and remains binary. The choice between the material and system scales is crucial for determining the effective development and implementation of regulations.
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建筑材料防火规范分类比较研究
无论是使用不可燃建筑还是可燃建筑,都可能因各种原因使用可燃材料,如室内装修、地板和隔热材料。因此,法规在防火分类中如何考虑可燃程度将影响这些建筑的防火安全水平以及建筑行业所有参与者之间的交流。在北美,对可燃性的规定主要是通过斯坦纳隧道测试评估表面火焰蔓延情况。虽然热量测定方法在全球范围内越来越普遍,但将其纳入北美建筑规范的情况仍然非常有限。根据对北美市场上二十种建筑材料进行的 ISO 5660-1 锥形量热计测试结果,对加拿大的火焰蔓延分类与日本、新西兰和欧盟的分类(Euroclass)进行了比较研究。本文介绍了测试及其局限性,以及概念框架。结果表明,随着材料可燃性等级的提高,分类之间的一致程度会降低,并保持二元性。材料尺度和系统尺度之间的选择对于决定法规的有效制定和实施至关重要。
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