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Fabrication of Micro Ultrasonic Powder Molding Polypropylene Part with Hydrophobic Patterned Surface

机译:用疏水图案化表面制备微型超声粉成型聚丙烯部分

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摘要

Constructing regular micro-structures with certain geometric characteristics on the surface of the polymer part can obtain some specific functions. Micro ultrasonic powder molding (micro-UPM) is an efficient processing technique for the fabrication of well-filled micro-structured Polypropylene (PP) parts. The micro-structure array on the surface of the core insert was obtained by low speed wire electrical discharge machining (WEDM-LS). PP polymer surfaces with micro-structured patterns were successfully replicated from the core insert surface after micro-UPM. By studying the detailed topography characterizations of micro-structured PP parts, the effects of processing parameters (ultrasonic energy, welding pressure and holding time) on the micro-structured filling show that when PP polymer was formed under the conditions of 1000 J, 115 kPa and 8 s during micro-UPM, well-filled micro-structured parts can be obtained. Besides, without low surface energy coating modification, the water contact angles (WCAs) of micro-structured PP parts increased from 85.3° to 146.8°, indicating that the wettability of the surface can be changed by replicating the micro-structure on PP parts after micro-UPM.
机译:在聚合物部分的表面上构造具有某些几何特性的常规微结构可以获得一些特定的功能。微型超声波粉末成型(微型upm)是制造填充填充的微结构聚丙烯(PP)部件的有效加工技术。通过低速线电放电加工(WEDM-LS)获得芯插入件表面上的微结构阵列。 PP聚合物表面具有微结构图案的PP聚合物表面从微型浮雕后的芯插入表面成功复制。通过研究微结构化PP部件的详细地形特征,处理参数(超声波能量,焊接压力和保持时间)对微结构填充的影响表明,当PP聚合物在1000J,115kPa的条件下形成PP聚合物时和8秒在微簧片期间,可以获得填满的微结构件。此外,没有低表面能涂层改性,微结构PP部件的水接触角(WCA)从85.3°增加到146.8°,表明通过在PP零件上的微结构上复制了表面的润湿性微芬欧。

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