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首页> 外文期刊>Intermetallics >Effect of coherent nanoprecipitates on martensitic transformation in Tb-doped NiMnGa melt-spun ribbons
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Effect of coherent nanoprecipitates on martensitic transformation in Tb-doped NiMnGa melt-spun ribbons

机译:连贯的纳米尺寸对TB掺杂Nimnga熔纺带中马氏体转化的影响

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摘要

Martensitic transformation (MT) behavior is compactly related with multiple effects in shape memory alloys. Here we report a special effect of broadening the MT temperature span with keeping the hysteresis stable via introducing coherent nanoprecipitates. The MT temperature span stabilize in the single-phase region and significantly expands with the formation of coherent nanoprecipitates in the matrix. This effect disappears after the growing up of precipitates during annealing treatment. Microstructural analysis indicates a heterogeneous distortion in matrix lattices with the largest distortion up to 10% in the matrix induced by the perfect coherent relationship between matrix and nanoprecipitates. A qualitative thermodynamic model based on Landau theory is employed to understand the effect on heterogeneous local stress field leads on MT temperature span. This work may promote the understanding of MT behavior in ferromagnetic shape memory alloys.
机译:马氏体变换(MT)行为与形状记忆合金中的多种效果紧凑相关。 在这里,我们报告了通过引入相干纳米尺寸来扩大MT温度跨度的特殊效果,使滞后稳定。 MT温度脉冲稳定在单相区域中,并在基质中形成相干纳米沉淀物的形成显着膨胀。 在退火处理期间促使沉淀后,这种效果消失。 微结构分析表明矩阵晶格中的异质变形在基质和纳米尺寸之间的完美相干关系引起的基质中具有最大变形的矩阵。 采用基于Landau理论的定性热力学模型来了解对MT温度跨度的异质局部应力场引线的影响。 这项工作可以促进铁磁形状记忆合金中对Mt行为的理解。

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