OBTAINING DECORATIVE ALKALINE-ACTIVATED CEMENT BY USING SLAGS WITH A HIGH CONTENT OF IRON OXIDE

O. A. Plakhtii, V. Nerubatskyi, D. Hordiienko, D. Shеlеst, A. Syniavskyi
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Abstract

The soft start device is designed to control the process of starting, operation and stopping of electric motors and enables smooth acceleration, smooth stopping, reduction of the starting current of the motor and coordination of the motor torque with the load moment. The article the control system of the triac device of the smooth start of an asynchronous motor with a constant load moment is considered. The control provides a reduction in the starting current and starting torque of the asynchronous motor. The principle of operation and the main technical parameters of the soft start device are described. The method of reducing power losses in power semiconductor elements of the soft start device is considered. The study of electromechanical processes in the soft start device when working with an asynchronous motor was carried out due to simulated computer modeling in the Matlab / Simulink software environment. The results of simulation modeling are given: oscillograms of input currents of the soft start device, dynamics of speed change and starting torque of an asynchronous motor. In the course of the simulation, it was established that the operation of the soft start device allows to reduce the starting current and starting torque by almost half. It is shown that the adjustment of the time to reach the full opening angle of the power switches of the soft start device and the starting angle of the opening of the power switches, which determines the acceleration dynamics of the asynchronous motor, significantly affects the value of the maximum amplitude value of the current and torque. The results of theoretical studies were implemented in a real physical prototype of the soft start device. The image of the boards of the developed soft start device is shown and its technical characteristics are indicated.
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利用含铁量高的矿渣制备装饰性碱活性水泥
软启动装置用于控制电机的启动、运行和停止过程,使电机平稳加速、平稳停止,减小电机启动电流,使电机转矩与负载力矩协调。本文研究了恒负载力矩异步电动机平稳起动的可控硅装置的控制系统。控制提供了一个减少起动电流和起动转矩的异步电动机。介绍了软启动装置的工作原理和主要技术参数。研究了降低软启动器件功率半导体元件功率损耗的方法。在Matlab / Simulink软件环境下对软启动装置与异步电动机工作时的机电过程进行了仿真计算机建模研究。给出了仿真建模的结果:软启动装置的输入电流示波器、异步电动机的转速变化动力学和起动转矩。在仿真过程中,确定了软启动装置的运行允许将启动电流和启动转矩降低近一半。结果表明,软启动装置电源开关达到完全开启角度的时间和电源开关开启角度的调整,决定了异步电动机的加速度动态,对电流和转矩的最大幅值的取值有显著影响。理论研究结果在软启动装置的实际物理样机中得到了实现。给出了所研制的软启动装置的电路板图像,并指出了其技术特点。
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