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Influence of the Microstructure on Magnetic Stray Fields of Low-Carbon Steel Welds

机译:微观结构对低碳钢焊缝磁场场的影响

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This study examines the relationship between the magnetic mesostructure with the microstructure of low carbon steel tungsten inert gas welds. Optical microscopy revealed variation in the microstructure of the parent material, in the heat affected and fusion zones, correlating with distinctive changes in the local magnetic stray fields measured with high spatial resolution giant magneto resistance sensors. In the vicinity of the heat affected zone high residual stresses were found using neutron diffraction. Notably, the gradients of von Mises stress and triaxial magnetic stray field modulus follow the same tendency transverse to the weld. In contrast, micro-X-ray fluorescence characterization indicated that local changes in element composition had no independent effect on magnetic stray fields.
机译:本研究研究了低碳钢钨惰性气体焊接微观结构的磁性腹部结构之间的关系。 光学显微镜显示在热影响和融合区域中母材的微观结构的变化,与用高空间分辨率巨型磁阻传感器测量的局部磁场场中的独特变化相关。 在热影响区域附近,使用中子衍射发现高残余应力。 值得注意的是,von误法应力和三轴磁场场模量的梯度遵循横向焊缝的相同趋势。 相反,微X射线荧光表征表明元件组合物的局部变化对磁场场没有独立的影响。

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