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Plastic Stress Influences on the Magnetization of Ferromagnetic Steel in Geomagnetic field

机译:地磁场铁磁钢磁化的塑性应力影响

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To explore the influences of plastic stress and residual stress on the magnetization of ferromagnetic steel in geomagnetic field, series of experiments and analyses are conducted in this paper. Two different types of specimens made of Q195 carbon steel with/without initial geometric discontinuities are manufactured. Various plastic tensile stresses are introduced into the specimens and the corresponding applied stresses, deformation distributions and residual magnetic fields of specimens are measured. The gradients of the residual magnetic field of the specimens are computed and the relationship between the residual magnetic field and the plastic loading stress is summarized. It is concluded that the intensity of magnetization of ferromagnetic steel in geomagnetic field increases with the plastic stress, but scattered by the dislocation. The influences of residual stress on the magnetization of ferromagnetic steel are not significant in the geomagnetic field.
机译:为了探讨塑性应力和残余应力对地磁场中铁磁钢磁化的影响,本文进行了一系列实验和分析。制造了由Q195碳钢制成的两种不同类型的标本,制造/没有初始几何不连续性。将各种塑料拉伸应力引入样品中,并测量相应的施加的应力,变形分布和样品的残余磁场。计算样本的残余磁场的梯度,并且总结了残余磁场与塑料负载应力之间的关系。得出结论,铁磁钢在地磁场中的磁化强度随着塑性应力而增加,但散布脱位。残余应力对铁磁钢磁化的影响在地磁场中不显着。

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