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Martensitic transformations in nanostructured nitinol: Finite element modeling of grain size and distribution effects

机译:纳米镍钛合金中的马氏体转变:晶粒尺寸和分布效应的有限元模拟

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摘要

A computational model of martensitic phase transformation in nanostructured nitinol is developed which takes into account the grain size effect. On the basis of the theoretical analysis of the thermodynamic transformation criterion and the energy barrier for phase transformation, it was demonstrated that the energy barrier for martensitic phase transformation in nanocrystalline nitinol increase drastically with decreasing the grain size. Finite element simulations of phase transformations and structure evolution in nanocrystalline nitinol under mechanical (tensile) loading are carried out for different structures of the materials. It was observed that the volume content of martensitic phase decreases drastically with reducing the grain size. When the grain size is smaller than some critical value (around 50-80 nm, both in our simulations and in experimental data), the martensitic phase transformation are totally suppressed. Graded and localized distributions of grain sizes of nitinol were compared with nitinol samples with homogeneous grain size distribution. In the materials with localized region of small grains, it was observed that the martensite rich regions form first on the border between the coarse and fine grained regions, and expand inside the region with small grains along the shear band direction.
机译:建立了考虑晶粒尺寸效应的纳米结构镍钛合金中马氏体相变的计算模型。在对热力学转变准则和相变能垒进行理论分析的基础上,证明了纳米晶镍钛合金中马氏体相变的能垒随着晶粒尺寸的减小而急剧增加。针对材料的不同结构,对纳米晶镍钛合金在机械(拉伸)载荷下的相变和结构演变进行了有限元模拟。观察到,马氏体相的体积含量随着晶粒尺寸的减小而急剧降低。当晶粒尺寸小于某个临界值时(在我们的模拟和实验数据中都在50-80 nm左右),马氏体相变将被完全抑制。将镍钛诺粒度的分级和局部分布与具有均匀粒度分布的镍钛诺样品进行了比较。在具有小晶粒局部区域的材料中,观察到马氏体富集区域首先在粗晶粒区域和细晶粒区域之间的边界上形成,并且在剪切带方向上在小晶粒区域内扩展。

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