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Stray flux effects on the magnetic hysteresis parameters in NDE of low carbon steel

机译:杂散磁通对低碳钢无损检测中磁滞参数的影响

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摘要

The magnetic minor hysteresis loops and parameters of low carbon steel plate samples annealed at different temperatures have been measured and compared with the results of ring samples. The influences of stray flux in the fringe areas of the plate on the magnetic properties were discussed with the help of a finite element approach. It is found that the coercivity H_C and the hysteresis loss W_H of all of the plate samples sharply deviate from the values of the corresponding ring samples with the same applied field amplitude H_a larger than 3000 A/m. It is proposed that the fringe areas of the plate sample are magnetized by the stray flux to an irreversible state at large Ha, and the remanent fields act against the applied field in the inverse direction, resulting in the extreme increase of H_C and W_H. Although these parameters measured at high-applied field can reflect the microstructure changes, low field results are preferable for the practical use.
机译:测量了在不同温度下退火的低碳钢板样品的磁微小磁滞回线和参数,并与环样品的结果进行了比较。借助于有限元方法,讨论了板边缘的杂散磁通对磁性能的影响。发现所有板样品的矫顽力H_C和磁滞损耗W_H与具有大于3000A / m的相同施加磁场幅度H_a的相应环样品的值急剧偏离。建议将平板样品的边缘区域在大Ha处被杂散磁通磁化为不可逆状态,而剩余磁场沿相反方向作用于施加磁场,从而导致H_C和W_H极大增加。尽管在高电场下测量的这些参数可以反映微观结构的变化,但对于实际应用而言,低电场结果是优选的。

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