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Durability of clay roofing tiles: the influence of microstructural and compositional variables

机译:粘土瓦的耐久性:微观结构和组成变量的影响

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摘要

The frost behaviour of 13 industrially manufactured roofing tiles was assessed through a double approach: performing severe freeze/thaw testing (EN 539-2) and calculating durability indices, according to models present in the literature. The products microstructure was fully investigated in terms of physical, technological and compositional parameters, and the results correlated with the frost resistance of roofing tiles. No prediction model was able to reliably foresee the product performances; in particular, the correspondence with the excellent experimental behaviour of the most resistant samples is lacking. Coupling microstructural with compositional variables, new indications came out concerning the design and production of roofing tiles able to withstand adverse climatic conditions. If, once again, bulk density can be considered as the most influent parameter (highest values involve an improved durability), the production of roofing tiles with excellent frost resistance involves also the evaluation of an increased number of product (i.e. raw materials composition, microstructure and phase composition) and processing (i.e. firing temperature) variables.
机译:通过两种方法评估了13种工业制造的屋面瓦的防冻性能:根据文献中的模型进行严格的冻融测试(EN 539-2)并计算耐久性指标。对产品的微观结构进行了全面的物理,技术和组成参数研究,其结果与屋面砖的抗冻性有关。没有任何预测模型能够可靠地预测产品性能;特别是,缺乏与大多数抗性样品优异的实验性能的对应关系。将微观结构与成分变量结合在一起,就可以承受恶劣气候条件的屋面瓦的设计和生产出现了新的迹象。如果再次将堆积密度视为最有影响力的参数(最高值涉及改善的耐久性),则具有优异抗冻性的屋面瓦的生产还涉及对产品数量增加的评估(即原材料组成,微结构)和相组成)和加工(即烧结温度)变量。

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