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Abnormal grain growth induced by cyclic heat treatment in Fe-Mn-Al-Ni superelastic alloy

机译:Fe-Mn-Al-Ni超弹性合金中循环热处理引起的晶粒长大异常

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Abnormal grain growth (AGG) and related microstructural features were investigated for Fe-Mn-Al-Ni shape memory alloy sheets subjected to thermal cycling through alpha (bcc) -> alpha + gamma (fcc) -> alpha phase transformations by means of microstructural observations including the electron backscatter diffraction (EBSD) technique. In the initial cooling from the alpha single-phase to the alpha + gamma two-phase region, a high density of subgrain boundaries with small angle deviation of about 1 degrees through 2 degrees is formed around the. precipitates in the a matrix. The subgrain structure remains in the a single phase even after dissolution of the. precipitates by heating, and some limited grains grow faster by encroaching on neighboring grains, including the subgrains, resulting in AGG. The maximum grain size after the AGG becomes extremely large when annealing in the alpha + gamma two-phase region is performed at temperatures below 1000 degrees C, and a single crystal over 30 mm in length can be obtained by repeating the cyclic heat treatment. It is found that the boundary energy of the subgrains dominantly contributes to the AGG as the driving force. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了Fe-Mn-Al-Ni形状记忆合金薄板的异常晶粒生长(AGG)和相关的显微组织特征,这些组织经历了通过显微组织的α(bcc)-> alpha +γ(fcc)->α相转变的热循环观测结果包括电子背散射衍射(EBSD)技术。在从α单相到α+γ两相区域的初始冷却中,在其周围形成了高密度的亚晶界,且具有约1度到2度的小角度偏差。在基质中沉淀。即使在溶解后,亚晶粒结构仍保持在单相中。通过加热沉淀,一些有限的晶粒通过侵蚀相邻晶粒(包括亚晶粒)而更快地生长,从而形成AGG。当在低于1000℃的温度下在α+γ两相区域中进行退火时,AGG之后的最大晶粒尺寸变得极大,并且通过重复循环热处理可以获得长度超过30mm的单晶。已经发现,亚晶粒的边界能主要作为驱动力贡献于AGG。 (C)2016 Elsevier Ltd.保留所有权利。

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