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Discrete Element Method to Model Cracking for Two Layer Systems

机译:两层系统裂纹建模的离散元方法

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Cracking at the fold is a serious issue for many grades of coated paper and coated board. Some recent work has suggested methods to minimize this problem by using two or more coating layers of different properties [Salminen et al. (2008a and 2008b)]. A discrete element method (DEM) has been used to model deformation events for single layer coating systems such as in-plain and out-of-plain tension, three-point bending, and a novel moving force picking simulation, but nothing has been reported related to multiple coating layers. In this paper, a DEM model has been expanded to predict the three-point bending response of a two-layer system. The main factors being evaluated include the use of different binder systems in each layer and the ratio of the bottom and top layer weights. As in the past, the properties of the binder and the binder concentration are input parameters. The model can predict crack formation that is a function of these two sets of factors. In addition, the model can predict the flexural modulus, the maximum flexural stress, and the strain-at-failure. The predictions are qualitatively compared to experimental results reported in the literature.
机译:对于许多等级的铜版纸和铜版纸,折痕处的裂纹是一个严重的问题。最近的一些工作提出了通过使用两个或多个具有不同特性的涂层来最小化该问题的方法[Salminen et al。 (2008a和2008b)]。离散元素方法(DEM)已用于对单层涂层系统的变形事件进行建模,例如平面内和平面外拉力,三点弯曲以及新颖的移动力拾取模拟,但尚未见任何报道与多层涂层有关。在本文中,扩展了DEM模型以预测两层系统的三点弯曲响应。评估的主要因素包括在每一层中使用不同的粘合剂体系以及底层和顶层的重量比。与过去一样,粘合剂的性质和粘合剂浓度是输入参数。该模型可以预测裂纹形成,这是这两组因素的函数。此外,该模型可以预测挠曲模量,最大挠曲应力和破坏应变。将这些预测与文献中报道的实验结果进行定性比较。

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