Lipovec Zupanc Enej, Humar Miha, Fajdiga Gorazd
Department of Wood Science and Technology, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.
Materials (Basel). 2024 Sep 23;17(18):4662. doi: 10.3390/ma17184662.
Wood is increasingly being used in construction as an alternative to steel and concrete. As wood is an inhomogeneous material, this has a strong effect on its static and dynamic properties. When timber is used as a load-bearing component, there is a possibility that it will be exposed to unfavourable weather conditions (wind) or dynamic environments (vibrations), leading to fatigue of the material. In this article, the effects of load frequency and load magnitude on the durability of Norway spruce wood () were investigated. The frequencies of 5 and 10 Hz were compared at three load levels of 70%, 80% and 90% of the static breaking force. The research results show that the load magnitude has a major influence on the dynamic strength at the same fatigue frequency. Each increase in load means a lower dynamic strength of the spruce, which is reflected in the load cycles achieved. In addition, the dynamic properties of spruce wood deteriorate with an increasing loading frequency, which is more pronounced at higher loading forces. These test results are the basis for determining the Wöhler curve, which is required as input data for the material properties in numerical calculations to determine the durability of the material.
木材越来越多地被用于建筑中,以替代钢材和混凝土。由于木材是一种不均匀的材料,这对其静态和动态性能有很大影响。当木材用作承重部件时,它有可能会暴露在不利的天气条件(风)或动态环境(振动)中,从而导致材料疲劳。在本文中,研究了加载频率和加载幅度对挪威云杉木()耐久性的影响。在静态破坏力的70%、80%和90%这三个加载水平下,比较了5赫兹和10赫兹的频率。研究结果表明,在相同的疲劳频率下,加载幅度对动态强度有重大影响。每次加载增加都意味着云杉木的动态强度降低,这反映在所能达到的加载循环次数上。此外,云杉木的动态性能会随着加载频率的增加而变差,在较高的加载力下这种情况更为明显。这些测试结果是确定韦勒曲线的基础,而韦勒曲线是数值计算中确定材料耐久性所需材料属性的输入数据。