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Viscoelastic properties of the matrix substance of chemically treated wood

机译:化学处理木材的基质物质的粘弹性

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The temperature variations of the storage modulus and the loss tangent along the grain for four kinds of chemically modified Sitka spruce (Picea sitchensis Carr.) woods were measured at 11 Hz over a temperature range of -150 to 200 degrees C. By using a cell-wall model in which the amorphous matrix substance is disposed parallel to the axis of cellulose fibrils inclined at an angle to the grain direction of the wood, the storage modulus, E-m, and the loss tangent, tan delta(m) of the matrix substance were estimated, and the relaxation processes detected were discussed. In formalization, the restriction of the micro-Brownian motion of the main chains due to oxymethylene bridges between the hydroxyl groups resulted in a decrease in tan delta(m) above 0 degrees C. In acetylation and propylene oxide treatment, a marked reduction in E-m was observed over the temperature range tested, by the introduction of bulky side chains, and the tan delta(m) remarkably increased in the high-temperature range. In polyethylene glycol (PEG) impregnation, the E-m increased below 20 degrees C due to the freezing of the micro-Brownian motion of PEG molecules in the cell lumens as well as in the cell walls, while it was reduced above this temperature by the melting of PEG molecules. (C) 1998 Kluwer Academic Publishers. [References: 15]
机译:在-150至200摄氏度的温度范围内,以11 Hz的频率测量了四种化学改性的Sitka云杉(Picea sitchensis Carr。)木材的储能模量和沿着颗粒的损耗角正切的温度变化。 -壁模型,其中无定形基质物质平行于纤维素纤丝的轴线放置,该纤维素纤维原纤维与木材的纹理方向成一定角度倾斜,该基质物质的储能模量Em和损耗角正切tanδ(m)估计,并讨论检测到的松弛过程。在形式化中,由于羟基之间的甲醛桥对主链的微布朗运动的限制导致在高于0摄氏度时tanδ(m)降低。在乙酰化和环氧丙烷处理中,Em显着降低通过引入笨重的侧链,在所测试的温度范围内观察到“α”,并且tanδ(m)在高温范围内显着增加。在聚乙二醇(PEG)浸渍中,由于PEG分子在细胞腔和细胞壁中的微布朗运动冻结,Em升高至20℃以下,而在熔化过程中,Em降低至高于该温度。 PEG分子。 (C)1998 Kluwer学术出版社。 [参考:15]

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