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Novel one-step route to induce long-term lotus leaf-like hydrophobicity in polyester fabric

机译:诱导聚酯织物中长期荷叶样疏水性的新型一步法

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摘要

Lotus leaf-like hydrophobic pattern development through a facile and commercially applicable method has always been an issue for the textile industry. In this study, a novel commercially applicable method for the development of such patterns without affecting the structural integrity of the polyester textile was proposed. Photoresist molds with pattern dimensions similar to the lotus leaf surface were fabricated by a conventional photolithography process. The inverse of these patterns was obtained by a Ni electroforming process conducted on the fabricated photoresist molds to form Ni molds, which were utilized to transfer the lotus-leaf like patterns onto polyester fabric by one-step hot embossing method. The surface morphology of the polyester fabric before and after pattern transfer was studied by an optical microscope and field emission scanning electron microscopy images, respectively. The results revealed a successful transfer of patterns. Three-dimensional profiler data analysis provided the information regarding roughness of the embossed surfaces. A high surface roughness (R-a=48 mu m) was achieved after the development of lotus leaf-like patterns on the polymer textile. Contact angle hysteresis was studied using the contact angle analyzer.
机译:通过简便且可商业应用的方法开发出荷叶状疏水图案一直是纺织工业的一个问题。在这项研究中,提出了在不影响聚酯纺织品的结构完整性的情况下开发这种图案的新颖的商业上可应用的方法。具有图案尺寸类似于荷叶表面的光致抗蚀剂模具是通过常规的光刻工艺制造的。通过在制造的光致抗蚀剂模具上进行镍电铸工艺以形成镍模具来获得这些图案的反面,该​​镍模具用于通过一步热压花方法将莲叶状图案转印到聚酯织物上。分别通过光学显微镜和场发射扫描电子显微镜图像研究了图案转印之前和之后的聚酯织物的表面形态。结果表明模式已成功转移。三维轮廓数据分析提供了有关压纹表面粗糙度的信息。在聚合物纺织品上形成荷叶状图案之后,获得了较高的表面粗糙度(R-a = 48微米)。使用接触角分析仪研究了接触角磁滞。

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