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High-Tc SQUID microscope study of the effects ofmicrostructure and deformation on the remanent magnetization of steel

机译:高科技SQUID显微镜研究组织和变形对钢的剩磁的影响

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We have studied the effects of heat treatment and mechanical stress on the remanent magnetization of ferromagnetic steels using a high-transition-temperature (HTC) Superconducting QUantum Interference Device (SQUID) microscope. Samples were prepared by different heat treatments, which produced varied microstructures, and different rolling treatments, which produced varied levels of deformation. The samples were subsequently magnetized in fields of 50 mT, and the remanent magnetization was measured by rastering the sample over the SQUID using a two-dimensional (2D) translation stage with a scanning range of 50 mm×50 mm. With a separation between the SQUID and sample of approximately 0.5 mm, this produced a 2D magnetic field image due to the local remanent magnetization of the sample. In addition, microstructural information was determined using optical imaging, allowing us to correlate the effects of heat treatment and mechanical stress on local remanent magnetisation with detailed microstructural information. Since the strength and integrity of steels can be well predicted from microstructural information, correlation of this information with the 2D remanent magnetization images could lead to an effective method for the non-destructive evaluation of ferromagnetic steels through a simple measurement of remanent magnetization
机译:我们已经使用高转变温度(HTC)超导量子干涉仪(SQUID)显微镜研究了热处理和机械应力对铁磁钢剩余磁化强度的影响。通过不同的热处理制备样品,这些热处理产生不同的微观结构,并进行不同的轧制处理,从而产生不同程度的变形。随后将样品在50 mT的磁场中磁化,并通过使用二维(2D)位移台以50 mm×50 mm的扫描范围在SQUID上对样品进行光栅化来测量剩余磁化强度。在SQUID和样品之间的间距约为0.5 mm时,由于样品的局部剩余磁化强度,因此产生了2D磁场图像。此外,使用光学成像确定了微结构信息,这使我们可以将热处理和机械应力对局部剩磁的影响与详细的微结构信息相关联。由于可以从微观结构信息中很好地预测钢的强度和完整性,因此该信息与2D剩磁图像的相关性可以通过一种简单的剩磁测量方法,为铁磁钢的无损评估提供一种有效的方法。

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