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Mechanical and physical properties of Cunninghamia lanceolata wood decayed by brown rot

机译:褐腐腐烂杉木木材的机械和物理性能

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The relationship between the mechanical properties of Cunninghamia lanceolata (Chinese fir) wood and the development of fungal decay was investigated with the aim of implementing a statistical model useful as a non-destructive and a fast method for determining the state of conservation of in-service timber structures. Artificial decay due to brown rot fungi was induced on wood specimens and physical and mechanical test were performed periodically, as well as anatomical observation of wood, FT-IR spectroscopic and XRD diffraction analysis. As a result, Chinese fir was confirmed to have a good durability against fungi, showing a mass loss percentage of 7.21% on average after 14 weeks of exposure. On the contrary, the mechanical properties reduced dramatically during the decay test: a 19% decrease was observed for compression strength and 21% for tensile strength. The mechanism of decay was explored and the corresponding damage constitutive model was proposed.
机译:研究杉木(Cunninghamia lanceolata)(杉木)木材的机械性能与真菌腐烂发展之间的关系,目的是建立一种统计模型,该模型可用作确定服务中保存状态的无损快速方法。木结构。在木材标本上诱发由褐腐真菌引起的人工腐烂,并定期进行物理和机械测试,以及木材的解剖观察,FT-IR光谱和XRD衍射分析。结果,确认杉木具有良好的抗真菌耐久性,暴露14周后平均质量损失率为7.21%。相反,在衰减测试中,机械性能急剧下降:压缩强度下降了19%,拉伸强度下降了21%。探索了衰减的机理,并提出了相应的损伤本构模型。

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