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Investigation and Prediction on Regulation of Hydrophobicity of Polymethyl Methacrylate (PMMA) Surface by Femtosecond Laser Irradiation

机译:通过飞秒激光照射对聚甲基丙烯酸甲酯(PMMA)表面疏水性调节的研究和预测

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摘要

This study presents the contact angle prediction model of a trapezoidal groove structure based on the laser irradiation on polymethyl methacrylate (PMMA). The trapezoidal groove structure was designed and proposed according to the characteristics of a femtosecond laser. First, the complete wetting model and incomplete wetting model which were compatible with the characteristics of the laser mechanism were constructed based on the Gibbs free energy and the structural parameters of the trapezoidal groove structure. Then, based on the contact angle prediction models constructed, the samples were divided into two groups according to the designed structural parameters, and the experimental investigations were carried out. The result demonstrated that the incomplete wetting prediction model was more in line with the actual situation. The convex width and the top edge length of spacing of the trapezoidal groove structure both affected the contact angle prediction results. From both the experimental contact angles and the contact angles predicted by the incomplete wetting model, it could be known that the contact angle reached 138.09° when the ratio of the convex width to the top edge length of spacing was 0.25, indicating that the smaller the ratio of the convex width to the top edge length of spacing, the better the hydrophobicity of PMMA.
机译:本研究介绍了基于激光照射对甲基丙烯酸甲酯(PMMA)的激光照射的梯形槽结构的接触角预测模型。根据飞秒激光器的特性设计和提出梯形槽结构。首先,基于Gibbs自由能和梯形槽结构的结构参数构建与激光机构特性相容的完全润湿模型和不完全润湿模型。然后,基于构造的接触角预测模型,根据设计的结构参数将样品分成两组,进行实验研究。结果表明,不完全润湿预测模型更加符合实际情况。锥形宽度和梯形槽结构间距的凸宽和顶部边缘长度都影响了接触角预测结果。从实验接触角和由不完全润湿模型预测的接触角度来看,当凸宽与间距的顶部边缘长度的比率为0.25时,接触角达到138.09°,表明较小的凸宽与间距的顶部边缘长度的比率,PMMA的疏水性越好。

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