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首页> 外文期刊>Physica, B. Condensed Matter >Intermittent deposition and interface formation on the microstructure and magnetic properties of NiFe/Cu composite wires
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Intermittent deposition and interface formation on the microstructure and magnetic properties of NiFe/Cu composite wires

机译:NiFe / Cu复合丝的组织和磁性能的间歇性沉积和界面形成

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In this work, magnetron sputtering in the form of continuous deposition or intermittent deposition modes was used to obtain NiFe/Cu composite wires. Based on the results, intermittent deposition mode led to the formation of an interface between deposited layers. A better crystallite and a little grain growth were found for the intermittently deposited wire. Good soft magnetic properties and large giant magneto-impedance (GMI) effect were exhibited by both composite wires. The GMI profile for the intermittently deposited composite wire was characterized by two peaks, which could be attributed to the difference in the magnetic properties of the inner and the outer magnetic layers. Annealing was introduced to the intermittently deposited wire so that the inherent stresses were partially relaxed. As a result, its GMI effect was enhanced and the magnetic properties of the two magnetic layers became similar. Hysteresis loops of the composite wires displayed different magnetic behaviors and hence further affirmed the GMI results.
机译:在这项工作中,采用连续沉积或间歇沉积模式的磁控溅射法获得了NiFe / Cu复合线。根据结果​​,间歇沉积模式导致沉积层之间形成界面。对于断续沉积的焊丝,发现了更好的微晶和很少的晶粒生长。两种复合线材均表现出良好的软磁性能和大的巨磁阻抗(GMI)效应。断续沉积的复合线材的GMI轮廓由两个峰表征,这可以归因于内部和外部磁性层的磁性不同。将退火引入到断续沉积的金属丝中,以使固有应力得以部分缓解。结果,增强了其GMI效应,并且两个磁性层的磁性能变得相似。复合线的磁滞回线表现出不同的磁性能,因此进一步证实了GMI结果。

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