The compound formation mechanism of butterfly martensite

H. Gong , N.J. Gu
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引用次数: 6

Abstract

The butterfly martensites formed in Fe-1.20% C, CrMn, GCr18Mo, and 25Cr2Ni4WA steels have been investigated by optical and transmission electron microscopy. It has been found that the mid-rib of a butterfly martensite is a thin-plate martensite and that the formation of butterfly martensite is a multi-stage process. In the initial stage, crossed or kinked thin-plate martensites are formed. Subsequently, these become mid-ribs, grow more, then create butterfly martensite in various forms. Crossed thin-plate martensite thickens into butterfly martensite with tails, while the kinked form transforms to tailless butterfly martensite by thickening on only one side of the wings. The formation of butterfly martensite may not be a single continuous process, but rather a compound one comprised of separate stages.

蝴蝶马氏体复合形成机理
用光学显微镜和透射电镜研究了Fe-1.20% C、CrMn、GCr18Mo和25Cr2Ni4WA钢中蝴蝶状马氏体的形成。发现蝴蝶状马氏体的中肋为薄板状马氏体,蝴蝶状马氏体的形成是一个多阶段的过程。在初始阶段,形成交叉或扭结的薄板马氏体。随后,这些成为中肋,生长更多,然后形成各种形式的蝴蝶马氏体。交叉薄板马氏体增厚为带尾的蝴蝶马氏体,而扭结马氏体仅在翅膀一侧增厚为无尾的蝴蝶马氏体。蝴蝶马氏体的形成可能不是一个单一的连续过程,而是一个由不同阶段组成的复合过程。
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