Łuczak Bartosz, Sumelka Wojciech, Szymkuć Wojciech, Jopek Hubert
Institute of Structural Analysis, Poznan University of Technology, Piotrowo 5, 60-965 Poznań, Poland.
Institute of Applied Mechanics, Poznan University of Technology, Jana Pawła II 24, 60-965 Poznań, Poland.
Materials (Basel). 2023 Jan 31;16(3):1204. doi: 10.3390/ma16031204.
In this work, roof felts are considered. Special attention is paid to the mechanical properties and self-healing (SH) phenomena under elevated temperatures. The results of the heating and strength tests for the entire range of material work, from the first load to sample breaking, are shown with respect to the angle of reinforcement relative to the longitudinal axis of the sample and different ways of breaking the continuity of the material. The influence that the material thickness and modifiers used for the production of the base material have on the obtained results was also pointed out. The meaningful SH strength is reported-from 5% up to 20% of the strength of the undamaged material-which, in perspective, can provide comprehensive knowledge of the optimal use of roofing felts and its proper mathematical modeling.
在这项工作中,对屋面油毡进行了研究。特别关注了高温下的机械性能和自愈(SH)现象。针对材料从首次加载到样品破坏的整个工作范围,展示了加热和强度测试结果,这些结果与增强材料相对于样品纵向轴的角度以及材料连续性破坏的不同方式有关。还指出了材料厚度和用于生产基础材料的改性剂对所得结果的影响。报告了有意义的自愈强度——为未受损材料强度的5%至20%——从长远来看,这可以为屋面油毡的最佳使用及其适当的数学建模提供全面的知识。