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首页> 外文期刊>JOM >Metal Amorphous Nanocomposite (MANC) Alloy Cores with Spatially Tuned Permeability for Advanced Power Magnetics Applications
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Metal Amorphous Nanocomposite (MANC) Alloy Cores with Spatially Tuned Permeability for Advanced Power Magnetics Applications

机译:金属无定形纳米复合材料(MANC)合金芯,具有用于高级电磁磁性应用的空间上调渗透性

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摘要

Metal amorphous nanocomposite (MANC) alloys are an emerging class of soft magnetic materials showing promise for a range of inductive components targeted for higher power density and higher efficiency power conversion applications including inductors, transformers, and rotating electrical machinery. Magnetization reversal mechanisms within these alloys are typically determined by composition optimization as well as controlled annealing treatments to generate a nanocomposite structure composed of nanocrystals embedded in an amorphous precursor. Here we demonstrate the concept of spatially varying the permeability within a given component for optimization of performance by using the strain annealing process. The concept is realized experimentally through the smoothing of the flux profile from the inner to outer core radius achieved by a monotonic variation in tension during the strain annealing process. Great potential exists for an extension of this concept to a wide range of other power magnetic components and more complex spatially varying permeability profiles through advances in strain annealing techniques and controls.
机译:金属无定形纳米复合材料(MANC)合金是一种新一类的软磁材料,显示了一系列用于较高功率密度和更高效率的电源转换应用,包括电感器,变压器和旋转电机的一系列电感元件。这些合金中的磁化反转机制通常通过组成优化和受控退火处理来确定,以产生由嵌入非晶前体中的纳米晶体构成的纳米复合材料结构。在这里,我们证明了通过使用应变退火过程来优化性能的给定部件内的空间地改变渗透性的概念。通过在应变退火过程中通过单调变化在菌株退火过程中通过单调变化实现的磁通曲线从内部到外芯半径的平滑来实验地实现该概念。对于这种概念的延伸,在宽范围的其他动力磁性部件和更复杂的空间变化的渗透率概况中存在巨大的潜力通过应变退火技术和控制的进步。

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