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Research and Prediction of Wettability of Irregular Square Column Structure on Polymethyl Methacrylate (PMMA) Surface Prepared by Femtosecond Laser

机译:由飞秒激光制备的甲基丙烯酸甲酯(PMMA)表面上不规则方柱结构润湿性的研究与预测

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摘要

Based on the contact angle prediction model of a traditional square column structure, the prediction models for wettability of a parallelogram square column structure (PSCS) on polymethyl methacrylate (PMMA) surface prepared by femtosecond laser were established. An experiment was conducted to analyze the rationality of the established complete wetting model and incomplete wetting model. It was found that the incomplete wetting prediction model of the square column structure was more in line with the actual situation. For PSCS, the length of both the long and short sides of the boss and the width of the groove exerted an impact on the contact angle prediction results. Under the condition that the length of the long and short sides of the boss remained unchanged and the groove width increased, the contact angle increased under complete wetting and incomplete wetting. In contrast, under the condition that the long side length of the boss and the groove width remained unchanged and the short side length of the boss increased, the contact angle increased under complete wetting but decreased under incomplete wetting. The maximum contact angle reached 135.65°, indicating that PSCS on PMMA surface enhanced the surface hydrophobicity of the material.
机译:基于传统方柱结构的接触角预测模型,建立了通过飞秒激光器制备的甲基丙烯酸甲酯(PMMA)表面上平行四边形柱结构(PSC)的润湿性预测模型。进行了一个实验,分析了建立的完全润湿模型和不完全润湿模型的合理性。发现方柱结构的不完全润湿预测模型更加符合实际情况。对于PSC,凸台的长侧和短边的长度和凹槽的宽度施加对接触角预测结果的影响。在凸管长度和短边的长度保持不变的条件下,凹槽宽度增加,接触角在完全润湿和不完全润湿下增加。相反,在凸台和槽宽的长边长度保持不变的条件下,凸台的短边长度增加,接触角在完全润湿下增加,但在不完全润湿下减少。最大接触角达到135.65°,表明PSC在PMMA表面上增强了材料的表面疏水性。

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