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首页> 外文期刊>Wood and Fiber Science >Estimating maximum water absorption of wood fiber/polymer fluff composites.
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Estimating maximum water absorption of wood fiber/polymer fluff composites.

机译:估计木纤维/聚合物绒毛复合材料的最大吸水率。

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The objective of this study was to develop a model to estimate the maximum water absorption (MWA) of wood fibre/polymer fluff composites as a function of polymer fluff content and board density. Polymeric diphenylmethane diisocyanate (PMDI) resin bonded dry-process wood fibre/polymer fluff composites were used in this study. Six polymer fluff contents (0, 15, 30, 45, 60, and 100%) and four target oven-dry board densities in the range of 0.50-1.00 g/cm3 were studied. A water immersion test was conducted on these boards. The effect of irreversible thickness swelling after water immersion (TSi) on the estimation of the maximum water absorption was evaluated. It was shown that the irreversible thickness swelling had a quadratic relationship with polymer fluff content and a linear relationship with oven-dry board density. The TSi of the composites used in this study was in the range of only 0.04-4.20%, which was negligible in the estimation of maximum water absorption. The prediction of maximum waterabsorption from the MWA model developed in this study was over 95% accuracy for most of the specimens. The maximum water absorption had a linear relationship with the polymer fluff content and a reciprocal relationship with board density.
机译:这项研究的目的是建立一个模型,以估计木材纤维/聚合物绒毛复合材料的最大吸水率(MWA)与聚合物绒毛含量和板密度的关系。这项研究使用了聚合的二苯甲烷二异氰酸酯(PMDI)树脂键合的干法木纤维/聚合物绒毛复合材料。研究了六种聚合物绒毛含量(0%,15%,30%,45%,60%和100%)和四种目标烘箱干燥板密度,范围为0.50-1.00 g / cm3。在这些板上进行了水浸测试。评估了水浸后(TSi)不可逆厚度膨胀对最大吸水率估计的影响。结果表明,不可逆的厚度膨胀与聚合物绒毛含量呈二次关系,与烘箱-干板密度呈线性关系。本研究中使用的复合材料的TSi仅在0.04-4.20%的范围内,在最大吸水率的估算中可以忽略不计。本研究中开发的MWA模型预测的最大吸水率对于大多数标本而言均超过95%。最大吸水率与聚合物绒毛含量呈线性关系,与板密度呈倒数关系。

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