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Combined Modeling And Experimental Studies To Optimize The Balance Between Fold Crack Resistance And Stiffness For Multilayered Paper Coatings - Part 1: Introduction And Modeling Studies

机译:建模与实验研究相结合,以优化多层纸涂料的耐折裂性和刚度之间的平衡-第1部分:简介和建模研究

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Fold-crack resistance is a key coated paper quality that influences the functionality and appearance of the final product. Cracking at the fold may lead to strength reduction and the appearance of a visible crack at the folded surface. It is well known that bending stiffness and fold cracking are closely related, with a higher stiffness leading to higher risk of fold cracking. The aim of this study was to optimise the balance of stiffness and fold cracking for multilayered paper coatings. This paper is Part 1 of a combined modeling and experimental study to assess the relationship between fold-crack resistance and bending stiffness in coated papers. The objective of the work was to suggest ways to optimize coated paper to maximise fold-crack resistance as well as bending stiffness.Models were developed to calculate bending stiffness, predict the onset of failure, and based on this prediction, calculate the residual load carrying capacity of coated paper. The model parameters included the number of coating layers, the individual layer thickness, and the mechanical properties of the coating layers in both tension and compression. The modeling work suggested that the best possibility to optimize the balance between fold cracking and bending stiffness was seen for triple coated paper. The use of a thin, stiff bottom coating layer, combined with a thick, lower-stiffness middle layer and a thin, stiff top coating layer gave the best balance. The simulations showed that a thin stiff bottom layer can be allowed to crack with a thick middle layer acting as a buffer to absorb the crack. This enables the use of a stiff top coating layer which contributes the most to the overall stiffness of the multilayered coated paper.
机译:耐折裂性是关键的涂布纸质量,它影响最终产品的功能和外观。折痕处的裂纹可能导致强度降低,并且在折痕表面上出现可见的裂纹。众所周知,弯曲刚度和折痕开裂密切相关,较高的刚度导致折痕开裂的风险更高。这项研究的目的是优化多层纸涂料的刚度和折痕开裂之间的平衡。本文是结合模型和实验研究的第1部分,用于评估涂料纸的抗折裂性和弯曲刚度之间的关系。这项工作的目的是提出优化涂布纸的方法,以最大程度地提高耐折裂性和弯曲刚度。 开发了用于计算弯曲刚度,预测破坏开始的模型,并基于此预测来计算铜版纸的残余承载能力。模型参数包括涂层的数量,单个层的厚度以及涂层在拉伸和压缩状态下的机械性能。建模工作表明,对于三重涂布纸,可以看到最佳的方法来优化折痕和弯曲刚度之间的平衡。薄的,坚硬的底部涂层与厚的,低刚度的中间层和薄的,坚硬的顶部涂层的结合使用可以达到最佳的平衡。模拟表明,可以使薄而硬的底层破裂,而厚的中间层可以作为吸收裂缝的缓冲层。这使得能够使用坚硬的顶部涂层,该涂层对多层涂层纸的整体刚度贡献最大。

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