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Observation of magnetic gradients in stainless steel with a high-T-c superconducting quantum interference device microscope

机译:用高T-c超导量子干涉装置显微镜观察不锈钢中的磁梯度

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摘要

Superconducting quantum interference device (SQUID) microscopes may serve as useful nondestructive evaluation (NDE) tools since they can precisely measure the local magnetic field variation that can be related to the characteristics of ferromagnetic materials. To demonstrate this, we have studied magnetic functionally graded materials (FGMs) in the Fe-Cr-Ni alloy system using a high-transition-temperature (HTc) SQUID microscope. The FGMs were either fabricated by inhomogeneous mechanical deformation or by heat treatment in a temperature gradient. The magnetic properties of these materials were measured using the vibrating sample magnetometer technique along the deformation or the temperature gradients. The results from this technique and the microstructural properties from optical imaging are discussed in conjunction with the magnetic field images obtained from the SQUID microscope. By exploring the results, the feasibility and benefit of utilizing SQUID microscopy as a NDE tool are discussed. (C) 2001 American Institute of Physics. References: 11
机译:超导量子干涉装置(SQUID)显微镜可以作为有用的无损评估(NDE)工具,因为它们可以精确测量与铁磁材料特性相关的局部磁场变化。为了证明这一点,我们使用高转变温度 (HTc) SQUID 显微镜研究了 Fe-Cr-Ni 合金系统中的磁性功能梯度材料 (FGM)。FGMs要么通过不均匀的机械变形制造,要么通过温度梯度的热处理制造。使用振动样品磁力计技术沿变形或温度梯度测量这些材料的磁性。结合SQUID显微镜获得的磁场图像,讨论了该技术的结果和光学成像的微观结构特性。通过对结果的探索,讨论了利用SQUID显微镜作为濒死体验工具的可行性和益处。(C) 2001年美国物理研究所。[参考文献: 11]

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