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Finger Friction Measurements on Coated and Uncoated Printing Papers

机译:涂布和未涂布打印纸的手指摩擦测量

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摘要

A macroscopic finger friction device consisting of a piezoelectric force sensor was evaluated on 21 printing papers of different paper grades and grammage. Friction between a human finger and the 21 papers was measured and showed that measurements with the device can be used to discriminate a set of similar surfaces in terms of finger friction. When comparing the friction coefficients, the papers group according to paper grade and the emerging trend is that the rougher papers have a lower friction coefficient than smoother papers. This is interpreted in terms of a larger contact area in the latter case. Furthermore, a decrease in friction coefficient is noted for all papers on repeated stroking (15 cycles back and forth with the finger). Complementary experiments indicate that both mechanical and chemical modifications of the surface are responsible for this decrease: (1) X-ray photoelectron spectroscopy measurements show that lipid material is transferred from the finger to the paper surface, (2) repeated finger friction measurements on the same paper sample reveal that only partial recovery of the frictional behaviour occurs and (3) profilometry measurements before and after stroking indicate small topographical changes associated with repeated frictional contacts.
机译:在21种不同纸张等级和克重的打印纸上评估了由压电力传感器组成的宏观手指摩擦装置。测量了人的手指与21篇论文之间的摩擦,结果表明,使用该设备进行的测量可以区分出一组相似的手指摩擦表面。在比较摩擦系数时,根据纸张等级和新兴趋势将纸张分组,即较粗糙的纸张比光滑的纸张具有更低的摩擦系数。在后一种情况下,这是通过较大的接触面积来解释的。此外,在反复抚摸(用手指来回15个循环)后,所有纸张的摩擦系数均降低。补充实验表明,表面的机械和化学改性均是造成这种下降的原因:(1)X射线光电子能谱测量表明脂质物质已从手指转移到纸张表面,(2)在手指上重复进行了手指摩擦测量相同的纸样本表明,摩擦行为仅发生部分恢复,并且(3)抚摸之前和之后的轮廓线测量表明与重复的摩擦接触相关的小形貌变化。

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