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Metal magnetic memory signal response to plastic deformation of low carbon steel

机译:金属磁记忆信号对低碳钢塑性变形的响应

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Metal magnetic memory (MMM) technique can be potentially used to evaluate early damage of ferromagnetic materials nondestructively due to its high sensitivity to stress and stress-strain state. An experimental investigation of the effect of plastic deformation on magnetic behavior has been undertaken in low carbon steel specimens. The measurements were made under applied tension after unloading in the elastic-plastic region for different strain levels. Magnetic memory signals show apparently different variation characteristics in the elastic and plastic ranges, and the magnetic signals are sharply changed by a rather small plastic deformation, which is in agreement with the predictions of the modified magnetomechanical effect model correlating magnetic memory signal with plastic strain. The results of the present work indicate that the MMM method can detect macroyielding and early stage of plastic deformation effectively.
机译:金属磁记忆(MMM)技术由于其对应力和应力应变状态的高度敏感性,可以潜在地用于无损评估铁磁材料的早期破坏。在低碳钢样品中进行了塑性变形对磁性能影响的实验研究。在不同的应变水平下,在弹塑性区域中卸载后,在施加的张力下进行测量。磁记忆信号在弹性和塑性范围内表现出明显不同的变化特性,并且磁信号由于相当小的塑性变形而急剧变化,这与将磁记忆信号与塑性应变相关联的改进的磁机械效应模型的预测相一致。目前的工作结果表明,MMM方法可以有效地检测塑性变形的大变形和早期变形。

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