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Investigation of the variation in magnetic field induced by cyclic tensile-compressive stress

机译:循环拉伸压缩应力引起的磁场变化研究

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The variation of the magnetic field, induced by applied stress under the geomagnetic field, can potentially be used to evaluate the degree of fatigue damage for ferromagnetic materials. To further investigate the physical mechanism of the metal magnetic memory phenomenon, measurements of the normal components of the stress-induced magnetic field intensity, Hp(y), were performed during rotary bending fatigue experiments under the geomagnetic field. The results showed that the process of metal magnetic memory includes reversible and irreversible magnetisation. The applied cyclic tensile-compressive stress would cause magnetisation to approach anhysteretic magnetisation irreversibly. In addition, magnetisation under tensile stress was different from that under compressive stress.
机译:由在地磁场下施加的应力引起的磁场变化可潜在地用于评估铁磁材料的疲劳损伤程度。为了进一步研究金属磁记忆现象的物理机制,在地磁场下的旋转弯曲疲劳实验过程中,对应力感应磁场强度的正常分量Hp(y)进行了测量。结果表明,金属磁存储过程包括可逆和不可逆磁化。施加的循环拉伸压缩应力将导致磁化不可逆地接近磁滞磁化。另外,拉伸应力下的磁化强度不同于压缩应力下的磁化强度。

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