论文标题

四维原位断层扫描中的木材压缩

Wood compression in four-dimensional in situ tomography

论文作者

Mäkinen, Tero, Halonen, Alisa, Koivisto, Juha, Alava, Mikko J.

论文摘要

木材变形,特别是在受压缩的情况下,表现出无尺度的雪崩样行为以及变形的结构依赖性定位。在压缩过程中,我们采用了三维(3D)X射线层表,并持续应力率负载。使用数字体积相关性,我们在实验过程中获得局部总应变,并将其与全球应变和声发射进行比较。从最柔软的部分开始,即弹簧木头,木细胞在整个样品中逐层塌陷。随着损害的进展,整个样品崩溃的软木层越来越多,这表明损害扩散而不是本地化。在3D中,可以看到脂肪尾的局部应变率分布,表明在软木层内,损坏发生在局部斑点。观察到的对数正态应变分布与这种独立局部倒塌或不可逆变形事件的发展的观点一致。然后,木材机械行为的一个关键特征是在年度环之间或之间的局部变形的复杂相互作用中。

Wood deformation, in particular when subject to compression, exhibits scale-free avalanche-like behavior as well as structure-dependent localization of deformation. We have taken three-dimensional (3D) x-ray tomographs during compression with constant stress rate loading. Using digital volume correlation, we obtain the local total strain during the experiment and compare it to the global strain and acoustic emission. The wood cells collapse layer by layer throughout the sample starting from the softest parts, i.e., the spring wood. As the damage progresses, more and more of the softwood layers throughout the sample collapse, which indicates damage spreading instead of localization. In 3D, one can see a fat-tailed local strain rate distribution, indicating that inside the softwood layers, the damage occurs in localized spots. The observed log-normal strain distribution is in agreement with this view of the development of independent local collapses or irreversible deformation events. A key feature in the mechanical behavior of wood is then in the complex interaction of localized deformation between or among the annual rings.

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