3-D computational simulation of paper handsheet structure and prediction of apparent density

September 2009 Pub Date : 2009-10-01 DOI:10.32964/tj8.9.10
M. Rueff, R. Vincent, C. Voillot
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引用次数: 5

Abstract

To obtain a better understanding of the influence of fiber morphology on paper properties, a novel 3-D computational simulator of paper structure was developed and validated by experimental work. Depending on the wood species, the dimensions of the fibers may vary by a factor of two or three, which directly influences paper structure and properties. Using known fiber size distributions, the model creates virtual handsheets made of these pulps that can be visualized, manipulated, and qualitatively and quantitatively compared to real handsheets. For a given basis weight, the model calculates the number of fibers in the sample and the main textural properties: thick-ness, apparent density, porosity, and roughness. It also computes the relative bonded area and the apparent specific surface, which are important factors for assessing mechanical or transport properties. This simulator can be used to predict, in a very short time, the variation of a property as a function of changes in one morphological parameter such as fiber length. This paper presents the main principles of the simulation and the results for one global textural property, apparent density. A prediction of tensile breaking strength will be presented in a subsequent paper.
纸质手抄结构三维计算模拟及表观密度预测
为了更好地了解纤维形态对纸张性能的影响,开发了一种新型的三维纸张结构计算模拟器,并通过实验进行了验证。根据木材种类的不同,纤维的尺寸可能会有两到三倍的变化,这直接影响到纸张的结构和性能。利用已知的纤维尺寸分布,该模型创建了由这些纸浆制成的虚拟手纸,可以可视化、操作,并与真实手纸进行定性和定量比较。对于给定的基权重,该模型计算样品中的纤维数量和主要纹理特性:厚度、表观密度、孔隙率和粗糙度。它还计算了相对粘合面积和表观比表面积,这是评估机械或运输性能的重要因素。这个模拟器可以用来预测,在很短的时间内,一个性质的变化作为一个形态参数的变化,如纤维长度的函数。本文介绍了模拟的主要原理和一个全局纹理属性——表观密度的模拟结果。拉伸断裂强度的预测将在随后的文章中提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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