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Contribution of Wood Fiber Hygroexpansion to Moisture Induced Thickness Swelling of Composite Plates

机译:木纤维的水份膨胀对水分引起的复合板厚度膨胀的贡献

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摘要

One of the main drawbacks of wood fiber-based composite materials is their propensity to swell due to moisture uptake. Because the wood fibers are usually the main contributor to hygroexpansion, it is of interest to quantify the hygroexpansion coefficient of wood fibers, to compare and rank different types of fibers. This investigation outlines an inverse method to estimate the transverse hygroexpansion coefficient of wood fibers based on measurements of moisture induced thickness swelling of composite plates. The model is based on composite micromechanics and laminate theory. Thickness swelling has been measured on polylactide matrix composites with either bleached reference fibers or crosslinked fibers. The crosslinking modification reduced the transverse hygroexpansion of the composites and the transverse coefficient of hygroexpansion of the fibers was reduced from 0.28 strain per relative humidity for reference fibers to 0.12 for cross-linked fibers.
机译:木纤维基复合材料的主要缺点之一是由于吸收水分而易于膨胀。由于木纤维通常是导致水膨胀的主要因素,因此有必要对木纤维的水膨胀系数进行量化,以比较和排列不同类型的纤维。这项研究概述了一种反向方法,该方法基于湿气引起的复合板厚度膨胀的测量值来估计木纤维的横向湿膨胀系数。该模型基于复合材料微力学和层压理论。已经测量了具有漂白的参考纤维或交联纤维的聚丙交酯基复合材料的厚度膨胀。交联改性降低了复合材料的横向湿膨胀,并且纤维的横向湿膨胀系数从参考纤维的每相对湿度0.28应变降低到参考纤维的0.12应变。

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