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首页> 外文期刊>Materialpruefung: Werkstoffe und Bauteile, Forschung Prufung Anwendung >Fabrication of microstructured polymers by a simple biotemplate embossing method and their characterization
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Fabrication of microstructured polymers by a simple biotemplate embossing method and their characterization

机译:通过简单的生物模板压印方法制备微结构聚合物及其表征

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摘要

In this work, microstructures were developed on a polymer surface using an embossing process by utilizing the transverse section of a wood as a biotemplate/mold. Microstructured polymers obtained by the proposed practical method were characterized by optical microscope for rough imaging, by scanning electron microscope for morphological properties and by Fourier transform infrared spectroscopy for surface chemistry. Utilization of a fluoropolymer eliminates the anti-stick surface pre-treatment and facilitates intact demolding of polymer structures from micro-voids of the wood. The height of the polymer microstructures was measured as 4 to 6 mu m. Dimensions of the wood microvoids can be tuned via acid/base treatment process. A drastic increase in heights of polymer microstructures (26 mu m) was observed for the sample stamped by the acid/base treated biotemplate. The proposed method, which delivers well-organized microstructure patterns on fluoropolymer surfaces, can be utilized in the production of specialty surfaces, such as antibacterial, stick/anti-stick and water repellent.
机译:在这项工作中,利用木材的横截面作为生物模板/模具,使用压印工艺在聚合物表面上形成了微结构。通过所提出的实用方法获得的微结构聚合物,通过光学显微镜进行粗略成像,通过扫描电子显微镜进行形态学表征,通过傅里叶变换红外光谱进行表面化学表征。含氟聚合物的使用消除了防粘表面的预处理,并促进了聚合物结构从木材微孔的完整脱模。聚合物微结构的高度被测量为4至6μm。木材微孔的尺寸可以通过酸/碱处理工艺进行调整。观察到用酸/碱处理过的生物模板压印的样品的聚合物微结构高度(26μm)急剧增加。所提出的方法在含氟聚合物表面上提供了组织良好的微观结构图案,可用于生产特殊表面,例如抗菌,防粘/防粘和防水。

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