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Sensor Hall Effect on Analyses Mechanical Stress

Sensor Hall Effect on Analyses Mechanical Stress
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摘要 Measuring the magnetic field is a common practice in industrial processes. We can cite the voltage measurements through PTs (potential transformers). This is a classic example of inductive field measuring, predicting to be measured quantity is of oscillatory nature, with the circuit instrumentation scaled and calibrated for a typical frequency of 50/60 Hz. For a long time, only the binary information: "this field" and "missing field" is needed. For example, only with this information can we identify the frequency of the rotating shaft. Currently, new technologies employ magnetic sensors for measuring positions (distances, angles, etc.) from the intensity of the magnetic field. Inductive sensors are inefficient on measurements of static fields, such as magnets, opening spaces for new linear Hall effect sensors, and static which deal with these situations without difficulty. The present study examines the behavior of the Hall sensor, making the measurement of the intensity of the static magnetic field of the rotating magnet and the same, verifying the effect of the speed at which the magnet passes the sensor in some way alter the measurement. The results are favorable manda and the versatility of these sensors in many different applications.
出处 《Journal of Mechanics Engineering and Automation》 2015年第1期19-25,共7页 机械工程与自动化(英文版)
关键词 Dynamic measurement Hall effect INSTRUMENTATION sensors and actuators in robotics 霍尔效应传感器 应力传感器 电压测量 机械 电感式传感器 频率预测 电压互感器 霍尔传感器
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  • 1[2]J.D. Turner. Development of a rotating-shaft torque sensor for automotive application. IEEE Proceeding,1988(5) : 334~ 340.
  • 2[3]F. W. Reinoud, F. Jensa, Noncontact capactive torque sensor for use on a rotating axle. IEEE Trans. Instr.Meas. , 1990(6): 1008~ 1013.

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