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Mechanical Behavior of Cellulose Microfibrils in Tension Wood in Relation with Maturation Stress Generation

机译:拉伸木材中纤维素微纤维的力学行为与成熟应力的产生

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摘要

A change in cellulose lattice spacing can be detected during the release of wood maturation stress by synchrotron x-ray diffraction experiment. The lattice strain was found to be the same order of magnitude as the macroscopic strain. The fiber repeat distance, 1.033 nm evaluated for tension wood after the release of maturation stress was equal to the conventional wood values, whereas the value before stress release was larger, corresponding to a fiber repeat of 1.035 nm, nearly equal to that of cotton and ramie. Interestingly, the fiber repeat varied from 1.033 nm for wood to 1.040 nm for algal cellulose, with an increasing order of lateral size of cellulose microfibrils so far reported. These lines of experiments demonstrate that, before the stress release, the cellulose was in a state of tension, which is, to our knowledge, the first experimental evidence supporting the assumption that tension is induced in cellulose microfibrils.
机译:可以通过同步加速器X射线衍射实验在释放木材成熟应力的过程中检测到纤维素晶格间距的变化。发现晶格应变与宏观应变相同数量级。释放成熟应力后,张力木材的纤维重复距离为1.033 nm,与常规木材值相同,而应力释放前的纤维重复距离较大,对应于1.035 nm的纤维重复,几乎等于棉和棉的重复距离。 ie麻。有趣的是,纤维的重复长度从木材的1.033 nm到藻类纤维素的1.040 nm不等,迄今报道的纤维素微原纤维的横向尺寸按递增顺序排列。这些实验表明,在释放应力之前,纤维素处于张力状态,据我们所知,这是第一个实验证据,支持了在纤维素微原纤维中诱发张力的假设。

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