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用于浸涂工艺通用自动化的3D打印机改装

Conversion of a 3D printer for versatile automation of dip coating processes.

作者信息

Rauh F, Bienek O, Sharp I D, Stutzmann M

机构信息

Walter Schottky Institute, Technical University of Munich, 85748 Garching, Germany.

出版信息

Rev Sci Instrum. 2023 Aug 1;94(8). doi: 10.1063/5.0128116.

Abstract

The necessity of increased sample throughput has led to increased usage of robotic systems and automation of sample preparation processes. Many devices, especially for dip coating applications, are mechanically simple but, nevertheless, require large financial investments. Here, a low-cost alternative to commercial dip coaters based on a readily available 3D printer is presented and resulting films are compared to those obtained from an exemplary commercial device. The 3D printer-based device is able to automate the dip coating process by performing complex multi-layer procedures using up to six different dipping solutions for a batch of up to six samples, potentially saving the many person-hours otherwise spent changing solutions and/or samples of more simple but also more expensive commercial systems. Coatings can be defined in terms of the sample used, dipping height, acceleration, speed, and the solution to be dipped into. The film quality from the home-built is compared to a representative commercial system with exemplary dip coating processes based on the deposition of thin films of polymethylmethacrylate (PMMA) from an ethyl acetate solution. The thin film quality is investigated by spectroscopic ellipsometry and profilometry. The film thicknesses achieved by both systems were comparable, and the home-built system performs similarly and, in some instances, better than the commercial one in terms of uniformity and roughness. Due to the similar performance, the higher level of automation, and significantly lower cost, the presented conversion of a 3D printer is a viable alternative to acquiring a commercial dip coating device.

摘要

提高样品通量的必要性导致了机器人系统使用的增加以及样品制备过程的自动化。许多设备,特别是用于浸涂应用的设备,机械结构简单,但仍需要大量资金投入。在此,我们展示了一种基于现成3D打印机的低成本商业浸涂机替代方案,并将所得薄膜与从典型商业设备获得的薄膜进行比较。基于3D打印机的设备能够通过使用多达六种不同的浸渍溶液对一批多达六个样品执行复杂的多层程序来实现浸涂过程的自动化,这可能节省了使用更简单但也更昂贵的商业系统时用于更换溶液和/或样品所花费的大量人工时间。可以根据所用样品、浸渍高度、加速度、速度以及要浸渍的溶液来定义涂层。将自制设备制备的薄膜质量与具有基于从乙酸乙酯溶液中沉积聚甲基丙烯酸甲酯(PMMA)薄膜的典型浸涂工艺的代表性商业系统进行比较。通过光谱椭偏仪和轮廓仪研究薄膜质量。两个系统实现的薄膜厚度相当,并且自制系统在均匀性和粗糙度方面表现相似,在某些情况下甚至优于商业系统。由于性能相似、自动化程度更高且成本显著更低,所展示的3D打印机改装方案是获取商业浸涂设备的可行替代方案。

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