2021
DOI: 10.2478/adms-2021-0026
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Effect of Fe-Ni Substitution in FeNiSiB Soft Magnetic Alloys Produced by Melt Spinning

Abstract: Alloys of FeNiSiB soft magnetic materials containing variable Fe and Ni contents (wt.%) have been produced by melt spinning method, a kind of rapid solidification technique. The magnetic and structural properties of FeNiSiB alloys with soft magnetic properties were investigated by increasing the Fe ratio. X-ray diffraction analysis and SEM images shows that the produced alloy ribbons generally have an amorphous structure, together with also partially nanocrystalline regions. It was observed that the structure … Show more

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Cited by 7 publications
(3 citation statements)
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“…Thanks to the rapid solidification processes, the grain refinement can be effectively triggered by obtaining high-density nuclei in the microstructure of the alloys [4,42,43]. Melt spinning method, which is one of the rapid solidification methods, comes into prominence due to its relatively high cooling rates (10 5 -10 7 K/s) and mass production advantage [38,[42][43][44]. Spraying a homogeneous molten metal alloy onto a rotating copper wheel and rapidly solidifying into a thin ribbon are steps during the process.…”
Section: Introductionmentioning
confidence: 99%
“…Thanks to the rapid solidification processes, the grain refinement can be effectively triggered by obtaining high-density nuclei in the microstructure of the alloys [4,42,43]. Melt spinning method, which is one of the rapid solidification methods, comes into prominence due to its relatively high cooling rates (10 5 -10 7 K/s) and mass production advantage [38,[42][43][44]. Spraying a homogeneous molten metal alloy onto a rotating copper wheel and rapidly solidifying into a thin ribbon are steps during the process.…”
Section: Introductionmentioning
confidence: 99%
“…It can be said that this situation increases the need for NdFeB magnets with high (BH)max and high Hc properties. Among the existing production methods, melt spinning method is a type of rapid solidification method using very high cooling rates (as high as 10 9 K/s), it provides amorphous and/or nanocrystalline structures [12,13] and thus superior magnetic properties such as high Hc and (BH)max unique to permanent magnets [1].…”
Section: Introductionmentioning
confidence: 99%
“…Uygun üretim yönteminin seçimi, ısıl işlem, tane sınırı difüzyonu prosesi (GBDP), alaşımlama bu prosesler arasında yer almaktadır [6][7][8][9][10]. Hızlı katılaştırma yöntemlerinden birisi olan ergiyik eğirme prosesi ile oldukça yüksek soğutma hızları kullanılarak amorf ve nispeten ince tane dağılımına sahip bir mikroyapı ve sonuç olarak, üstün manyetik özelliklere ulaşmak mümkündür [11][12][13][14]. NdFeB mıknatısların manyetik özelliklerinin, ısıl işlemle birlikte modifiye edildiği bilinmektedir [15].…”
Section: Introductionunclassified