Design and Automation of a vertical electrospinning system for manufacturing nanofibers

J. Rosales-Davalos, Ma. Angeles Enríquez-Pérez, Roberto López-Ramírez, J. E. Mastache-Mastache
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Abstract

The objective of this research consists of the design, construction and automation of the electrospinning mechatronic system to obtain nanofibers. As a first stage, the structure of the electrospinning mechatronic system and the distribution, injection and manifold system were designed and built. In the second stage, the open-loop control system was outlined and implemented. It is made up of: control, isolation stage, and the plant. In the first element, the LabView interface and ATMega2560 microcontroller were used to manipulate the variables of the injection speed and distribution of the solution, the speed of the nanofiber collector and the height between the capillary tube and the collector, the magnitude of the temperature and humidity from the environment, also, the graphic interface was developed, the second element consists of isolating the control and power stage in addition to amplifying the command signals and enabling the correction elements, the third element receiving the signals from the power stage to perform the action and produce a change in the controlled variables in the process. With this prototype, it is intended to obtain nanofibers from different polymer solutions for use in the area of catalysis and biomaterials.
纳米纤维垂直静电纺丝系统的设计与自动化
本研究的目的包括静电纺丝机电一体化系统的设计、构建和自动化,以获得纳米纤维。首先设计并构建了静电纺丝机电一体化系统的总体结构以及分配、喷射和歧管系统。在第二阶段,对开环控制系统进行了概述和实现。它由:控制、隔离阶段和工厂组成。在第一单元中,利用LabView接口和ATMega2560单片机对溶液的注射速度和分布、纳米纤维集热器的速度和毛细管与集热器之间的高度、环境温度和湿度的大小等变量进行了控制,并开发了图形界面;第二元件包括隔离控制级和功率级,除了放大命令信号并使能校正元件外,第三元件接收来自功率级的信号以执行动作并在过程中产生被控制变量的变化。有了这个原型,它打算从不同的聚合物溶液中获得纳米纤维,用于催化和生物材料领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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