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The influence of strain rate and pulp properties on the stress relaxation of wet paper - modeling of relaxation

机译:应变率和纸浆特性对湿纸应力松弛的影响-松弛模型

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The time-dependent stress (tension) relaxation behavior of wet paper plays a key role in web transfer from the press to the dryer section of a paper machine. In this study, three linear viscoelastic models were used to predict the short time range tension relaxation of wet paper. Over longer time periods, all three models gave relaxation moduli that were apparently linear on a logarithmic timeline. However, the results showed that the tension relaxation of wet paper had more than one characteristic time constant, meaning that the initial tension relaxation phase had a different constant than the later phase or phases. In practical applications, the most relevant time range for runnability of the wet paper web is from milliseconds to a few seconds. The obtained results suggest that the strain rate and initial tension of the relaxation dictate the shape of the tension relaxation curve of wet paper: the higher the strain rate, the greater the tension loss during the first second of relaxation. The tension relaxation behavior of wet paper did not generally depend on pulp type, refining level of pulp, or solids content. However, there can be significant differences between furnishes and solids content in the amount of draw that leads to a sufficient web tension. The results indicated that the tension relaxation behavior of wet paper may be based on a general viscoelastic mechanism that is independent of fiber network properties but depends on the fiber wall material. The findings suggest that the redistribution mechanism of stresses in the wet fiber network has a high level of regularity. The Prony series was capable of predicting tension relaxation behavior of wet paper over a wide time range. Therefore, it can be a very useful simulation tool not only for wet webs, but for any viscoelastic material that shows stress (tension) relaxation.
机译:湿纸随时间变化的应力(张力)松弛行为在纸幅从压榨机传递到造纸机的干燥机部分中起着关键作用。在这项研究中,使用三个线性粘弹性模型来预测湿纸的短时间范围内的张力松弛。在更长的时间段内,所有这三个模型给出的松弛模量在对数时间轴上显然是线性的。然而,结果表明,湿纸的张力松弛具有一个以上的特征时间常数,这意味着初始张力松弛阶段具有的常数不同于随后的一个或多个阶段。在实际应用中,湿纸幅运行时间最相关的时间范围是毫秒到几秒钟。获得的结果表明,松弛的应变率和初始张力决定了湿纸的张力松弛曲线的形状:应变率越高,松弛的第一秒内的张力损失就越大。湿纸的张力松弛行为通常不取决于纸浆类型,纸浆的精制水平或固体含量。但是,配料和固体成分之间的拉伸量可能存在显着差异,从而导致足够的纸幅张力。结果表明,湿纸的张力松弛行为可能是基于一般的粘弹性机理,该机理与纤维网络的性能无关,但取决于纤维壁材料。这些发现表明,湿纤维网络中应力的重新分布机制具有很高的规律性。 Prony系列能够在很宽的时间范围内预测湿纸的张力松弛行为。因此,它不仅对于湿纤维网,而且对于显示应力(张力)松弛的任何粘弹性材料都是非常有用的仿真工具。

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