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Friction properties of acrylic-carboxylated latex films - 1: Effects of acrylic acid concentration and pH

机译:丙烯酸羧化乳胶薄膜的摩擦性能-1:丙烯酸浓度和pH值的影响

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The aim of this work was to investigate how specificities of thin films prepared from aqueous polymer colloids (latexes) influence their friction properties, tested with a sliding stainless steel spherical tip. Two acrylic latexes containing either 1 wt% or 4 wt% of acrylic acid (AA) were used at pH 2 or 10. Bulk mechanical properties were also studied in order to improve the interpretation of friction results. Increasing AA concentration and pH increases the overall film rigidity, pH being more effective than AA concentration. Contact pressures are directly correlated to bulk mechanical properties whereas surface shear stresses are also strongly influenced by molecular interactions with the sliding tip. Friction coefficients are rather high, peaking at 5, because of important viscoelastic dissipation in the films as well as strong polar interactions introduced by AA, especially at high pH. The paper also addresses the question of the relevant characteristic length in this kind of friction study.
机译:这项工作的目的是研究由水性聚合物胶体(latexes)制备的薄膜的特异性如何影响其摩擦性能,并用滑动不锈钢球形尖端进行了测试。在pH值为2或10的情况下,使用了两种包含1 wt%或4 wt%的丙烯酸(AA)的丙烯酸胶乳。还研究了整体机械性能,以改善对摩擦结果的解释。增加AA浓度和pH值会增加整体膜的硬度,pH值比AA浓度更有效。接触压力与整体机械性能直接相关,而表面剪切应力也受到与滑动尖端的分子相互作用的强烈影响。摩擦系数相当高,在5处达到峰值,这是因为薄膜中重要的粘弹性耗散以及AA引入的强极性相互作用,尤其是在高pH下。本文还讨论了这种摩擦研究中相关特征长度的问题。

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