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Stepping motor driven constant-shear-rate rotating viscometer

机译:步进电机驱动的恒定剪切速率旋转粘度计

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Despite the frequent use of stepping motors in robotics, automation and in a variety of precision instruments, they can hardly be found in rotational viscometers. This paper proposes the use of a stepping motor to drive a conventional constant-shear-rate laboratory rotational viscometer, in order to avoid the use of a velocity sensor and gearbox and, thus, simplify the instrument design. To investigate this driving technique, a commercial rotating viscometer has been adapted to be driven by a stepping motor, which is controlled via a PC. Special circuitry has been added in order to microstep the stepping motor at a selectable step size, and to condition the torque signal. Tests have been carried out using the prototype to produce three flow curves for a standard Newtonian fluid (920 mPa.s at 25/spl deg/C) but employing a different microstep size for each of them, within the shear rule range from 50 s/sup -1/ to 500 s/sup -1/. The results indicate the feasibility of the proposed driving technique.
机译:尽管步进电机在机器人技术,自动化和各种精密仪器中经常使用,但在旋转粘度计中几乎找不到它们。为了避免使用速度传感器和齿轮箱,从而简化了仪器设计,本文提出了使用步进电机来驱动常规的恒定剪切速率实验室旋转粘度计。为了研究这种驱动技术,已经将商用旋转粘度计调整为由步进电机驱动,该步进电机通过PC控制。添加了特殊电路,以使步进电机以可选步长微步进,并调节扭矩信号。使用该原型进行了测试,以生成标准牛顿流体(在25 / spl deg / C时为920 mPa.s)的三个流动曲线,但每种曲线均采用不同的微步长,在50 s的剪切规则范围内/ sup -1 /至500 s / sup -1 /。结果表明了所提出的驾驶技术的可行性。

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