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首页> 外文期刊>IEEE Transactions on Magnetics >Detection of instantaneous torque using the magnetostrictive effect in a practical ferromagnetic shaft
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Detection of instantaneous torque using the magnetostrictive effect in a practical ferromagnetic shaft

机译:在实际铁磁轴中利用磁致伸缩效应检测瞬时转矩

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A method is presented by which instantaneous torque can be detected from a ferromagnetic shaft using magnetic-head-type pickups. The method assumes linearity of the torque sensor. The output of the torque sensor is sampled per 2 pi /N radian, from which the corresponding zero level is subtracted, and then multiplied by a coefficient to correct sensitivity fluctuation. The coefficients for N sampling points are inversely proportional to the sensitivity at each sampling point. The coefficients are estimated from the sensitivities measured at M points (MN). The usefulness of the method has been demonstrated using an S45C carbon steel motor shaft with no heat treatment. The nominal carbon content is about 0.42% approximately 0.48%. Peak-to-peak fluctuations in zero level and sensitivity were originally about 30%/FS (FS=10 Nm) and 10% approximately 15%, respectively. After application of the method, the total error was reduced to within +3%/FS for M=8 and N=250.
机译:提出了一种方法,通过该方法可以使用磁头式传感器从铁磁轴中检测瞬时转矩。该方法假设扭矩传感器为线性。扭矩传感器的输出每2 pi / N弧度采样一次,从中减去相应的零电平,然后乘以一个系数以校正灵敏度波动。 N个采样点的系数与每个采样点的灵敏度成反比。根据在M点(M N)处测得的灵敏度估算系数。使用未经热处理的S45C碳钢电机轴已经证明了该方法的有效性。标称碳含量为约0.42%至约0.48%。零电平和灵敏度的峰峰值波动最初分别约为30%/ FS(FS = 10 Nm)和10%约为15%。应用该方法后,对于M = 8和N = 250,总误差降低到+ 3%/ FS以内。

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