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首页> 外文期刊>Intermetallics >Surface topography, microstructure and magnetic domains in Al for Sn substituted metamagnetic Ni—Mn—Sn Heusler alloy ribbons
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Surface topography, microstructure and magnetic domains in Al for Sn substituted metamagnetic Ni—Mn—Sn Heusler alloy ribbons

机译:Sn取代的顺磁性Ni-Mn-Sn Heusler合金薄带的Al的表面形貌,微观结构和磁畴

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摘要

Heusler alloy Ni_(48)Mn_(39.5)Sn_(12.5-x)Al_x (x = 0, 1, 2,3) ribbons were prepared by melt spinning. The cross section of ribbons reveals a typical heterogeneous microstructure consisting of small equi-axed and columnar grains. The top and bottom ribbons sides are homogenous in composition but they differ in terms of surface structure. The wheel ribbon side appears smoother and shows some degree of macroscopic organization. On the other hand the free ribbon surface regardless of composition shows a more complex morphology consisting of small equi-axed grains, larger grains forming clusters and conical sub crystal structures. A characteristic twinned plate like microstructure confirming the presence of an increased amount of martensite has been observed for the Ni_(48)Mn_(39.5)Sn_(9.5)Al_3 ribbon. The martensitic plates are 70-100 nm in size. The phase shift of 0.5° was detected, while scanning the latter ribbon sample in magnetic force microscope mode, indicating the existence of a magnetic multi-domain structure in this sample.
机译:通过熔融纺丝制备Heusler合金Ni_(48)Mn_(39.5)Sn_(12.5-x)Al_x(x = 0,1,2,3)薄带。条带的横截面显示出典型的异质微观结构,包括小等轴和圆柱状晶粒。顶部和底部色带侧面的成分均一,但表面结构不同。轮带侧面看起来更光滑,并显示出一定程度的宏观组织。另一方面,不论组成如何,自由的带状表面均表现出更复杂的形态,包括小等轴晶粒,较大的晶粒形成团簇和圆锥形亚晶体结构。对于Ni_(48)Mn_(39.5)Sn_(9.5)Al_3薄带已观察到特征性孪晶板状显微组织,证实存在增加的马氏体。马氏体板的尺寸为70-100nm。在磁力显微镜模式下扫描后一个带状样品时,检测到0.5°的相移,表明该样品中存在磁性多畴结构。

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