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Influence of Cobalt on the Properties of Load-Sensitive Magnesium Alloys

机译:钴对负载敏感镁合金性能的影响

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摘要

In this study, magnesium is alloyed with varying amounts of the ferromagnetic alloying element cobalt in order to obtain lightweight load-sensitive materials with sensory properties which allow an online-monitoring of mechanical forces applied to components made from Mg-Co alloys. An optimized casting process with the use of extruded Mg-Co powder rods is utilized which enables the production of magnetic magnesium alloys with a reproducible Co concentration. The efficiency of the casting process is confirmed by SEM analyses. Microstructures and Co-rich precipitations of various Mg-Co alloys are investigated by means of EDS and XRD analyses. The Mg-Co alloys' mechanical strengths are determined by tensile tests. Magnetic properties of the Mg-Co sensor alloys depending on the cobalt content and the acting mechanical load are measured utilizing the harmonic analysis of eddy-current signals. Within the scope of this work, the influence of the element cobalt on magnesium is investigated in detail and an optimal cobalt concentration is defined based on the performed examinations.
机译:在这项研究中,镁与各种数量的铁磁合金元素钴形成合金,以便获得具有感官特性的轻型负载敏感材料,从而可以在线监测施加到由Mg-Co合金制成的部件上的机械力。利用挤压的Mg-Co粉末棒的优化铸造工艺可以生产具有可重复的Co浓度的磁性镁合金。铸造过程的效率通过SEM分析得到证实。通过EDS和XRD分析研究了各种Mg-Co合金的微观结构和富Co的析出物。 Mg-Co合金的机械强度通过拉伸试验确定。 Mg-Co传感器合金的磁性取决于钴含量和作用的机械负荷,是通过对涡流信号进行谐波分析来测量的。在这项工作的范围内,详细研究了钴元素对镁的影响,并根据所进行的检查确定了最佳钴浓度。

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