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A Computer-Controlled Near-Field Electrospinning Setup and Its Graphic User Interface for Precision Patterning of Functional Nanofibers on 2D and 3D Substrates

机译:计算机控制的近场静电纺丝设置及其图形用户界面,用于在2D和3D基板上精确图案化功能纳米纤维

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摘要

Electrospinning is a versatile technique for production of nanofibers. However, it lacks the precision and control necessary for fabrication of nanofiber-based devices. The positional control of the nanofiber placement can be dramatically improved using low-voltage near-field electrospinning (LV-NFES). LV-NFES allows nanofibers to be patterned on 2D and 3D substrates. However, use of NFES requires low working distance between the electrospinning nozzle and substrate, manual jet initiation, and precise substrate movement to control fiber deposition. Environmental factors such as humidity also need to be controlled. We developed a computer-controlled automation strategy for LV-NFES to improve performance and reliability. With this setup, the user is able to control the relevant sensor and actuator parameters through a custom graphic user interface application programmed on the C#.NET platform. The stage movement can be programmed as to achieve any desired nanofiber pattern and thickness. The nanofiber generation step is initiated through a software-controlled linear actuator. Parameter setting files can be saved into an Excel sheet and can be used subsequently in running multiple experiments. Each experiment is automatically video recorded and stamped with the pertinent real-time parameters. Humidity is controlled with +/- 3% accuracy through a feedback loop. Further improvements, such as real-time droplet size control for feed rate regulation are in progress.
机译:电纺丝是生产纳米纤维的通用技术。然而,它缺乏制造基于纳米纤维的装置所必需的精度和控制。使用低压近场静电纺丝(LV-NFES)可以显着改善纳米纤维放置的位置控制。 LV-NFES可以在2D和3D基板上对纳米纤维进行构图。但是,使用NFES要求静电纺丝喷嘴和基材之间的工作距离短,手动喷射启动以及精确的基材运动以控制纤维沉积。环境因素(例如湿度)也需要控制。我们为LV-NFES开发了计算机控制的自动化策略,以提高性能和可靠性。使用此设置,用户可以通过在C#.NET平台上编程的自定义图形用户界面应用程序来控制相关的传感器和执行器参数。载物台移动可以被编程为实现任何期望的纳米纤维图案和厚度。纳米纤维的产生步骤通过软件控制的线性致动器启动。参数设置文件可以保存到Excel工作表中,并且可以随后用于运行多个实验。每个实验都会自动录制视频,并贴上相关的实时参数。湿度通过反馈回路以+/- 3%的精度控制。正在进行进一步的改进,例如用于进料速度调节的实时液滴尺寸控制。

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