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首页> 外文期刊>Intermetallics >Microstructure and martensitic transformation of an ultrafine-grained TiNiNb shape memory alloy processed by equal channel angular pressing
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Microstructure and martensitic transformation of an ultrafine-grained TiNiNb shape memory alloy processed by equal channel angular pressing

机译:通过等通道角压加工超细颗粒罐头形状记忆合金的微观结构和马氏体转化

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摘要

Microstructure, martensitic transformation and mechanical properties of an ultrafine-grained Ti_(44)Ni_(47)Nb_9 shape memory alloy processed by equal channel angular pressing were investigated. The as-ECAP processed sample is characterized by an inhomogeneous and refined microstructure. In β-Nb phase-rich region, the grains of matrix are elongated with high density dislocations. In β-Nb phase-free region, the microstructure is partial recovery and characterized by near-equiaxed grains. The heterogeneous microstructure is attributed to presence of β-Nb phase. Martensitic transformation behavior of the as-ECAP processed sample is characterized by a single-stage transformation. The thermal cycling stability of transformation and the mechanical properties are considerably improved due to a strengthening effect resulting from refined grain size and high dislocation density.
机译:研究了超细颗粒Ti_(44)Ni_(44)Nb_9形状记忆合金的超细颗粒Ti_(44)Nb_9形状记忆合金的微观结构,马氏体转化和机械性能。 AS-ECAP加工样品的特征在于不均匀和精细的微观结构。 在β-Nb相相中区域中,基质颗粒具有高密度脱位伸长。 在β-Nb无相区域中,微结构是部分恢复,其特征在于近象轴的晶粒。 异质微观结构归因于β-NB相的存在。 AS-ECAP处理样本的马氏体变换行为的特征在于单级变换。 由于由精制晶粒尺寸和高位脱位密度产生的强化效果,转化的热循环稳定性和机械性能显着改善。

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