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Application of the Barkhausen effect probe with adjustable magnetic field direction for stress state determination in the P91 steel pipe

机译:磁场方向可调的Barkhausen效应探头在P91钢管中确定应力状态的应用

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摘要

The paper presents the results of application of a novel Barkhausen effect (BE) probe with adjustable magnetizing field direction for the stress level evaluation in ferromagnetic materials. The investigated sample was in a form of a pipe, made of P91 steel that was anisotropic due to the production process. The measurements were performed before and after welding, revealing the influence of welding process on the residual stress distribution. As was observed, the process introduced high tensile stresses in the normal to the weld direction (which can be interpreted as a decrease of strongly compressive residual stresses present in martensitic steels). In addition to that, the paper presents investigations of the measurement set performance corroborating its applicability for Barkhausen effect signal measurements in the magnetically anisotropic materials. The signals obtained during manual rotation of the probe (typical method of BE measurements) are very similar to those recorded during automatic field axis rotation.
机译:本文介绍了一种新颖的具有可调节磁化场方向的巴克豪森效应(BE)探头在铁磁材料中应力水平评估中的应用结果。所研究的样品为管道形式,由P91钢制成,由于生产工艺的缘故,它是各向异性的。在焊接前后进行了测量,揭示了焊接过程对残余应力分布的影响。如所观察到的,该过程在焊接方向的法线方向上引入了高拉伸应力(这可以解释为马氏体钢中存在的强压缩残余应力的减少)。除此之外,本文还对测量装置性能进行了研究,从而证实了其在磁各向异性材料中对巴克豪森效应信号测量的适用性。探头手动旋转(BE测量的典型方法)过程中获得的信号与自动场轴旋转过程中记录的信号非常相似。

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