de Souza Rodrigo P, Pacheco Fernanda, Prager Gustavo L, Gil Augusto M, Christ Roberto, de Mello Vinícius Muller, Tutikian Bernardo F
PPGEC, UNISINOS, São Leopoldo, RS 93022-750, Brazil.
Civil Engineer Program, PPGEC/Itt Performance, UNISINOS, São Leopoldo, RS 93022-750, Brazil.
Materials (Basel). 2019 Nov 7;12(22):3669. doi: 10.3390/ma12223669.
Masonry has been widely used as a construction method. However, there is a lack of information on its fire behavior due to the multitude of variables that could influence this method. This paper aimed to identify the influence of loading and mortar coating thickness on the fire behavior of masonry. Hence, six masonries made of clay tiles laid with mortar were evaluated. The mortar coating had a thickness of 25 mm on the face not exposed to high temperatures, while the fire-exposed face had thicknesses of 0, 15, and 25 mm. For each mortar coating thickness, two specimens were tested, with and without loading of 10 tf/m. The real-scale specimens were subjected to the standard ISO 834 fire curve for four hours, during which the properties of stability, airtightness, and thermal insulation were assessed. Results showed that loaded specimens yielded smaller deformations than unloaded ones. Samples that lacked mortar coating on the fire-exposed face underwent fire resistance decrease of 27.5%, while the ones with 15 mm decreased by 58.1%, and the ones with 25 mm decreased by 41.0%. As mortar coating thickness increased, the plane deformations decreased from 40 mm to 29 mm and the thermal insulation properties of the walls improved significantly. For specimens with mortar coating thickness of 25 mm, the load application resulted in a reduction of 23.8% of the thermal insulation, while the unloaded specimen showed a decrease of 43.3%, as well as a modification of its fire-resistance rating.
砖石结构作为一种建筑方法已被广泛使用。然而,由于可能影响这种方法的变量众多,关于其火灾行为的信息匮乏。本文旨在确定荷载和砂浆涂层厚度对砖石结构火灾行为的影响。因此,对六个用砂浆铺设的粘土砖砌体进行了评估。在未暴露于高温的面上,砂浆涂层厚度为25毫米,而暴露于火的面上的厚度分别为0、15和25毫米。对于每种砂浆涂层厚度,测试了两个试件,一个加载10 tf/m,另一个未加载。实际尺寸的试件按照标准ISO 834火灾曲线进行了四小时的试验,在此期间评估了其稳定性、气密性和隔热性能。结果表明,加载的试件产生的变形比未加载的试件小。暴露于火的面上没有砂浆涂层的试件的耐火性下降了27.5%,而有15毫米砂浆涂层的试件下降了58.1%,有25毫米砂浆涂层的试件下降了41.0%。随着砂浆涂层厚度的增加,平面变形从40毫米减小到29毫米,墙体的隔热性能显著提高。对于砂浆涂层厚度为25毫米的试件,施加荷载导致隔热性能降低了23.8%,而未加载的试件隔热性能下降了43.3%,并且其耐火等级也发生了变化。