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On the influence of tempered microstructures on magnetic Barkhausen emission in ferritic steels

机译:关于回火组织对铁素体钢中巴克豪森磁性发射的影响

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Magnetic Barkhausen emission (MBE) has been used to characterize various microstructures in tempered 0.2 wt% C steel, 2.25Cr-1Mo steel and 9Cr-1Mo steel samples (where the composition is in approximate weight per cent). A two-stage process of irreversible magnetic domain wall movement during magnetization is proposed considering the lath or grain boundaries and second-phase precipitates as the two major obstacles to domain-wall movement. The domain walls overcome these two major obstacles over a range of critical field strengths with some mean values, characteristic of the obstacles. If these two mean values are close to each other, then a single peak, sometimes associated with slope changes, appears in the MBE behaviour. On the other hand, if the mean values are widely separated, then two-peak MBE behaviour appears to indicate the influence of these two major obstacles separately. Based on this, the influence of the dissolution of martensite and/or bainite and the precipitation and growth of the second phase precipitates with different sizes and morphologies on the MBE has been explained. It is observed that the presence of two or more different types of carbide in the Cr-Mo steels significantly reduces the MBE compared with the growth of single carbides in the carbon steel. This study establishes the viability of the MBE technique for identifying different stages of tempering in ferritic steels. [References: 28]
机译:Barkhausen电磁辐射(MBE)已被用于表征回火的0.2 wt%C钢,2.25Cr-1Mo钢和9Cr-1Mo钢样品(其中成分约占重量百分比)的各种显微组织。考虑到板条或晶界和第二相析出物是畴壁运动的两个主要障碍,提出了磁化过程中磁畴壁不可逆运动的两阶段过程。畴壁克服了这两个主要障碍,在一定范围的临界场强范围内具有一些障碍物的特征值。如果这两个平均值彼此接近,则MBE行为中会出现一个有时与斜率变化相关的单个峰。另一方面,如果平均值相差很大,则两个峰值MBE行为似乎分别表明了这两个主要障碍的影响。基于此,已经解释了马氏体和/或贝氏体的溶解以及具有不同尺寸和形态的第二相沉淀物的沉淀和生长对MBE的影响。可以看出,与碳钢中单个碳化物的生长相比,Cr-Mo钢中两种或更多种不同类型的碳化物的存在显着降低了MBE。这项研究建立了MBE技术用于确定铁素体钢回火不同阶段的可行性。 [参考:28]

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