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Martensitic phase transformation in rapidly solidified Mn50Ni40In10 alloy ribbons

机译:快速凝固的Mn50Ni40In10合金薄带中的马氏体相变

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摘要

Heusler alloy Mn50Ni40In10 was produced as preferentially textured ribbon flakes by melt spinning, finding the existence of martensitic-austenic transformation with both phases exhibiting ferromagnetic ordering. A microcrystalline three-layered microstructure of ordered columnar grains grown perpendicularly to ribbon plane was formed between two thin layers of smaller grains. The characteristic temperatures of the martensitic transformation were MS=213 K, Mf=173 K, AS=222 K, and Af=243 K. Austenite phase shows a cubic L21 structure (a=0.6013(3) nm at 298 K and a Curie point of 311 K), transforming into a modulated fourteen-layer modulation monoclinic martensite
机译:Heusler合金Mn50Ni40In10通过熔融纺丝生产为优先织构的带状薄片,发现存在马氏体-奥氏体相变,且两个相均显示铁磁有序。垂直于带状平面生长的有序柱状晶粒的微晶三层微结构形成在两个较小晶粒的薄层之间。马氏体相变的特征温度为MS = 213 K,Mf = 173 K,AS = 222 K和Af = 243K。奥氏体相显示立方L21结构(a = 0.6013(3)nm在298 K和居里点311 K),转变为调制的14层调制单斜马氏体

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