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Air temperature regulation in a chamber for rotary forcespinning

机译:用于旋转分支的腔室中的空气温度调节

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Air temperature is an important factor related to evaporation process of the solvent during the production of nanofibers using rotary forcespinning (RFS). An air temperature regulation system was developed to maintain the air temperature of the RFS chamber with a volume of 63 dm3. It consisted of an AC (alternating current) heater (220V, 50Hz, 350W), a temperature and humidity sensor SHT11 (DT-SENSE), a dimmer circuit managed by an ATmega 8A microcontroller, a PWM (pulse width modulator) managed by an ATmega 16A, a DAC (digital to analog converter) circuit built in a low pass filter (LPF), and displays (LCD and computer). A proportional-integral-derivative (PID) control action was applied to maintain the air temperature in accordance with the desired temperature. The Kp, Ki, and Kd constants used by the PID controller were determined by employing the second Ziegler-Nichols tuning method. They were Kp of 18, Ki of 32.5, and Kd of 8.125. For the desired temperature ranging from 34 to 40°C its settling time was in the range of 451 to 950 s. The response was therefore quite fast response. The rise time was about 200 s for the desired temperature in the range of 34 to 38°C and 400 s for that of 40°C. The overshoot was 2°C at maximum and the steady-state error was 0.1°C. Considering the obtained controller parameters, the air temperature regulation in the chamber for RFS could be regarded as a good control system.
机译:空气温度是在使用旋转分支(RFS)的纳米纤维生产过程中与溶剂蒸发过程有关的重要因素。开发了一种空气温度调节系统以维持RFS室的空气温度,体积为63dm3。它包括AC(交流电流)加热器(220V,50Hz,350W),温度和湿度传感器SHT11(DT型),由ATMEGA 8A微控制器管理的调光器电路,由ATM管理的PWM(脉冲宽度调制器)组成, Atmega 16a,一种内置于低通滤波器(LPF)的DAC(数字到模拟转换器)电路,以及显示(LCD和计算机)。施加比例 - 积分衍生物(PID)控制作用以根据所需温度维持空气温度。通过采用第二Ziegler-Nichols调整方法来确定PID控制器使用的KP,KI和KD常数。它们为18,ki的kp为32.5,kd为8.125。对于所需的温度范围为34至40℃,其稳定时间在451至950秒的范围内。因此,响应是相当快的回应。对于40℃,上升时间为34至38℃和400秒的所需温度约为200秒。过冲最大2°C,稳态误差为0.1°C。考虑到所获得的控制器参数,RFS的腔室中的空气温度调节可以被视为良好的控制系统。

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