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A Steel Wire Stress Measuring Sensor Based on the Static Magnetization by Permanent Magnets

机译:基于永磁体静磁​​化的钢丝应力测量传感器

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摘要

A new stress measuring sensor is proposed to evaluate the axial stress in steel wires. Without using excitation and induction coils, the sensor mainly consists of a static magnetization unit made of permanent magnets and a magnetic field measurement unit containing Hall element arrays. Firstly, the principle is illustrated in detail. Under the excitation of the magnetization unit, a spatially varying magnetized region in the steel wire is utilized as the measurement region. Radial and axial magnetic flux densities at different lift-offs in this region are measured by the measurement unit to calculate the differential permeability curve and magnetization curve. Feature parameters extracted from the curves are used to evaluate the axial stress. Secondly, the special stress sensor for Φ5 and Φ7 steel wires is developed accordingly. At last, the performance of the sensor is tested experimentally. Experimental results show that the sensor can measure the magnetization curve accurately with the error in the range of ±6%. Furthermore, the obtained differential permeability at working points 1200 A/m and 10000 A/m change almost linearly with the stress in steel wires, the goodness of linear fits are all higher than 0.987. Thus, the proposed steel wire stress measuring sensor is feasible.
机译:提出了一种新的应力测量传感器,以评估钢丝的轴向应力。在不使用励磁线圈和感应线圈的情况下,传感器主要由一个由永磁体制成的静态磁化单元和一个包含霍尔元件阵列的磁场测量单元组成。首先,详细说明该原理。在磁化单元的激励下,将钢丝中空间上变化的磁化区域用作测量区域。通过测量单元测量在该区域的不同升程处的径向和轴向磁通密度,以计算磁导率差曲线和磁化曲线。从曲线中提取的特征参数用于评估轴向应力。其次,相应地开发了Φ5和Φ7钢丝专用应力传感器。最后,对传感器的性能进行了实验测试。实验结果表明,该传感器能够准确测量磁化曲线,误差在±6%范围内。此外,在工作点1200 A / m和10000 A / m处获得的差导磁率几乎随钢丝中的应力线性变化,线性拟合的优度均高于0.987。因此,提出的钢丝应力测量传感器是可行的。

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