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Mechanical and fungicidal properties of approximately 100 years old oak, beech and spruce wood beams

机译:机械和杀菌性能约为100岁的橡木,山毛榉木和云杉木梁

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The aim of this preliminary study was to investigate differences in mechanical and fungicidal properties of three different wood species (English oak (Quercus sp.), common beach (Fagus sylvatica) and Norway spruce (Picea abies)) specimens that were in indoor use for several decades, compared to control specimens of freshly cut timber. The collected material was cut to smaller specimen and conditioned in standard climate prior to further analysis. Mechanical, fungicidal, and sorption properties were determined according to the standard procedures.Our results show that mechanical properties of oak wood do not deteriorate in the investigated time frame. On the other hand, resistance of the wood against fungi decreases over time. The reason for this is yet to be confirmed, it could be due to the degradation of secondary metabolites. Similar results were observed for spruce wood as well. There were no statistically significant differences in mechanical properties of old and new spruce wood. In contrary to oak wood, there were also no significant differences in fungicidal properties, considering that spruce wood has lower durability than oak wood. Same as with oak wood, G. trabeum was found to be the most aggressive fungus. Ageing of beech wood resulted in a big drop in all of the tested mechanical properties, but showed no significant differences in fungicidal properties. Here is where the low durability of beech wood really shows. The old beech wood specimens were moderately deteriorated by insects and fungi, which was the reason for loss of bending and compressive strength.
机译:初步研究的目的是探讨三种不同木质物种的机械和杀真菌特性的差异(英语橡树(Quercus sp。),普通海滩(Fagus Sylvatica)和挪威云杉(Picea Andea))的标本是在室内使用的几十年,与新鲜切割木材的对照标本相比。在进一步分析之前,将收集的材料切割成较小的样品并在标准气候下调节。根据标准程序确定机械,杀真菌和吸附性能。结果表明,橡木木材的机械性能在调查的时间框架中不会劣化。另一方面,随着时间的推移,木材对抗真菌的抗性降低。迄今为止尚未得到证实的原因,可能是由于次生代谢物的降解。云杉木也观察到类似的结果。新旧云杉木材的机械性能没有统计学上显着的差异。与橡木木材相反,考虑到云杉木具有比橡木木材较低的耐久性,也没有显着差异。与橡木木,G.Trabeum一样,被发现是最具侵略性的真菌。山毛榉木老化导致所有测试的机械性能下降,但在杀真菌性质没有显着差异。这是山毛榉木的低耐久性真正展示的地方。昆虫和真菌的旧山毛榉木样本适度恶化,这是损失弯曲和抗压强度的原因。

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