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INFLUENCE OF GRAIN ORIENTATION ON MAGNETIC AGING BEHAVIOR OF A NON-ORIENTED SILICON STEEL SHEET

机译:晶粒取向对非取向硅钢片磁性时效行为的影响

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The influence of grain orientation on magnetic aging behavior of a non-oriented silicon steel sheet was investigated. It was observed that the relative core loss increment went up with increasing {111} texture, as well as with more second-phase particles which precipitated dispersively during the aging treatment (200°C for 24h) and created a pinning force against domain wall movement during magnetization. It was deduced that the magnetic driving force depends on grain orientation, that in which grains with <100> parallel to the magnetic field, is the most favorable texture component for reducing the core loss increment after aging. The magnetostrictive effect of the non-oriented silicon steel sheet may promote precipitation of second-phase particles. However, the sheet texture was not strong enough to induce notable diffences in magnetostriction among the observed samples.
机译:研究了晶粒取向对无取向硅钢板磁老化性能的影响。观察到,相对铁损的增加量随着{111}织构的增加而增加,并且更多的第二相颗粒在时效处理(200°C持续24h)过程中分散地析出并产生了抵抗畴壁运动的钉扎力在磁化过程中。可以推断出,磁性驱动力取决于晶粒取向,其中<100>平行于磁场的晶粒是减少时效后铁损增加的最有利的织构成分。非取向硅钢板的磁致伸缩效应可促进第二相颗粒的沉淀。但是,片材的强度不足以在观察到的样品之间引起磁致伸缩的显着差异。

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