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Effects of isofield uniaxial cyclic stress on the magnetization of 2% Mn pipeline steel - behavior on minor hysteresis loops and small major hysteresis loops

机译:等场单轴循环应力对2%Mn管线钢磁化的影响-小磁滞回线和小主磁滞回线的行为。

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摘要

The present results show that the sense of the stress-induced irreversible changes in the unstressed magnetization is not always towards the anhysteretic. Examples where the change is away from the anhysteretic are shown, as well as cases where the cyclic uniaxial stress does not cause an irreversible change in the sample's unstressed magnetization when that magnetization does not coincide with a point along the anhysteretic curve. Examination of the magnetization changes with cyclic stress along the upper or lower branches of a minor hysteresis loop suggests that the distance along that branch from the previous turning point is the most important factor in determining the sense of the stress-induced changes in magnetization. Initially the stress-induced changes in the unstressed magnetization occur in the same sense as they would have before the turning point, but the interaction between the domain walls and the pinning sites in the sample as the applied magnetic field changes after the turning point causes this stress-induced change to decrease in value and then reverse in sign. This suggests that the isofield cyclic stress-induced changes in the magnetization should be considered to be towards a local equilibrium condition rather than a global equilibrium condition (the anhysteretic curve).
机译:目前的结果表明,在无应力的磁化中,应力引起的不可逆变化的意义并不总是朝向磁滞现象。显示了变化远离无磁特性的示例,以及当该单磁应力与沿无磁特性曲线的点不重合时,循环单轴应力不会导致样品的无应力磁化强度发生不可逆变化的示例。检查磁化强度随次磁滞回线的上支路或下支路的循环应力的变化,表明沿该支路与上一个转折点的距离是确定应力引起的磁化强度变化的最重要因素。最初,应力引起的无应力磁化强度的变化与转折点之前发生的意义相同,但是随着转折点后施加的磁场的变化,畴壁和样品中的钉扎位点之间的相互作用会导致这种情况。压力引起的变化,使其值减小,然后符号反转。这表明,应将等场循环应力引起的磁化强度变化视为局部平衡条件,而不是整体平衡条件(磁滞曲线)。

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