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Stress-Sensory Properties of Amorphous Co-Alloy Wires with Negative Magnetostriction under Elastic Deformation

机译:弹性变形下负磁致伸缩非晶合金线的应力感觉特性

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The effect of the wire diameter and tensile and torsion loads on the rcmagnetization ability and the stress sensitivity of amorphous Co-alloy wires is investigated. It is shown that amorphous wires have a high magnetic softness to the applied external field in a wide range of diameters of 20-300 μm. The amplitude of the electromagnetic signal of electromotive force (EM F) increases with increasing wire diameter. It is established that amorphous wires with diameter in the range of 50-140 μm are sensitive to applied elastic tensile stresses. Increase in stresses to 300 MPa is accompanied by a fourfold decrease in the amplitude of the EMF signal. These wires are also sensitive to torsion stresses in a weakly and strongly stretched state. The first stage is accompanied by an intense increase in the amplitude of the EMF signal to values near to the amplitude of the original unloaded wire. At the second stage, the amplitude value achieved is preserved. It is established that an optimum interval of recording torsion stresses is determined by the wire diameter and values of applied tensile load. It is concluded that amorphous wires in a wide range of diameters can be used as highly sensitive noncontact sensors of field and tensile and torsion load detectors.
机译:研究了线径和拉伸荷载对rcMagnetization能力的影响和无定形共合金线的应力敏感性。结果表明,无定形线在宽的直径范围内具有高磁性柔软度,在20-300μm的宽范围内。电动势(EM F)的电磁信号的幅度随着线径的增加而增加。建立了直径在50-140μm范围内的非晶线对施加的弹性拉伸应力敏感。压力增加到300MPa伴随着EMF信号的幅度的四倍降低。这些电线对弱和强烈拉伸的扭转应力也敏感。第一阶段伴随着EMF信号的幅度的强烈增加,以靠近原始卸载线的幅度的值。在第二阶段,所达到的幅度值被保留。建立了记录扭转应力的最佳间隔由施加的拉伸载荷的线径和值确定。得出结论,各大直径范围内的非晶线可用作高度敏感的场和拉伸和扭转载荷检测器的高度敏感的非接触传感器。

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