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首页> 外文期刊>Journal of Mechatronics, Electrical Power, and Vehicular Technology >Design and Development of a Control System for Nanofiber Electrospinning
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Design and Development of a Control System for Nanofiber Electrospinning

机译:纳米纤维静电纺丝控制系统的设计与开发

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This paper describes the development of a control hardware and software for a nano-fiber electro-spinning system. The hardware consists of motor driver boards, a high DC voltage board, and a main control board. The user interface software on PC is developed using Visual Studio C # 2010 express edition. The motor driver boards are controlled by an ATmega8 microcontroller IC, while the main board is controlled by an ATmega 128 microcontroller IC. Communication between the main board and the motor driver boards uses the inter integrated circuit (I2C), while communication between PC and the main board uses a serial communication at a baud rate of 9,600 bps. The high DC voltage generator is designed to have an output of 0-25 kV. High DC voltage output is configurable by giving a combination of low logic and high impedance into a six bit input. The result show that maximum output of high DC voltage is 25.025 kV with formula of curve is y = 1x – 0.0244 with R2 = 0.9998 and PC software interface can work very well. Polymer flow rate can be configured from PC interface software via I2C connected to the main board. The flow rate y follows the RPM setting x, according to the formula y = 0.954x – 0.0099 with R2 = 1. The results of scanning electron microscope (SEM) for morphology analysis of PVDF copolymer composite nano-fiber shows that the average diameter of the resulted fiber is 136.43 nm, when output high DC voltage is set to 15 kV and speed of syringe pump is set to 5 RPM.
机译:本文介绍了用于纳米纤维电纺丝系统的控制硬件和软件的开发。硬件包括电机驱动器板,高直流电压板和主控制板。使用Visual Studio C#2010 Express Edition开发PC上的用户界面软件。电机驱动器板由ATmega8微控制器IC控制,而主板由ATmega 128微控制器IC控制。主板和电机驱动器板之间的通信使用内部集成电路(I2C),而PC和主板之间的通信使用波特率为9600 bps的串行通信。高直流电压发生器的设计输出为0-25 kV。通过将低逻辑和高阻抗组合到一个六位输入中,可以配置高直流电压输出。结果表明,高直流电压的最大输出为25.025 kV,曲线公式为y = 1x – 0.0244,R2 = 0.9998,并且PC软件界面可以很好地工作。可以通过PC接口软件通过连接到主板的I2C来配置聚合物流速。流量y遵循RPM设置x,根据公式y = 0.954x – 0.0099,R2 =1。扫描电子显微镜(SEM)对PVDF共聚物复合纳米纤维进行形态分析的结果表明,当输出高直流电压设置为15 kV,注射泵速度设置为5 RPM时,所得光纤为136.43 nm。

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