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What holds paper together: Nanometre scale exploration of bonding between paper fibres

机译:什么使纸结合在一起:纸纤维间粘合的纳米级探索

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摘要

Paper, a man-made material that has been used for hundreds of years, is a network of natural cellulosic fibres. To a large extent, it is the strength of bonding between these individual fibres that controls the strength of paper. Using atomic force microscopy, we explore here the mechanical properties of individual fibre-fibre bonds on the nanometre scale. A single fibre-fibre bond is loaded with a calibrated cantilever statically and dynamically until the bond breaks. Besides the calculation of the total energy input, time dependent processes such as creep and relaxation are studied. Through the nanometre scale investigation of the formerly bonded area, we show that fibrils or fibril bundles play a crucial role in fibre-fibre bonding because they act as bridging elements. With this knowledge, new fabrication routes can be deduced to increase the strength of an ancient product that is in fact an overlooked high-tech material.
机译:纸是一种人造纤维,这种纤维已经使用了数百年,是一种天然的纤维素纤维网络。在很大程度上,正是这些单根纤维之间的粘合强度控制着纸张的强度。使用原子力显微镜,我们在这里探索了纳米尺度上单个纤维-纤维键的机械性能。单个纤维-纤维键静态和动态地加载有经过校准的悬臂,直到键断裂。除了计算总能量输入外,还研究了与时间有关的过程,例如蠕变和松弛。通过对先前结合区域的纳米级研究,我们发现原纤维或原纤维束在纤维与纤维的结合中起着至关重要的作用,因为它们起着桥接元素的作用。有了这些知识,就可以推断出新的制造路线,以增加实际上是被忽视的高科技材料的古老产品的强度。

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