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Effect of high-rate annealing on microstructure, martensitic transformation and shape memory behavior of TiNiCu melt-spun ribbons

机译:高速退火对TiNiCu熔纺薄带组织,马氏体转变和形状记忆行为的影响

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摘要

The amorphous rapidly quenched quasi-binary TiNi-TiCu alloys containing 30-38 at.% Cu were crystal-lized by isothermal annealing at 500 degrees C for 300 s and by exposing to short electric pulse with a duration of 10 ms to study the effect of the annealing rate on their properties. The results obtained showed that electropulse crystallization fundamentally changed the microstructure of the alloys due to almost completely hindering the formation of brittle Ti-Cu phases. This leads to a significant increase in the enthalpy of the martensitic transformation and a considerable shift of the transformation range towards higher temperatures. It was found that reducing the crystallization time dramatically increases the plasticity and shape memory effect of the alloys. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过在500摄氏度下进行等温退火300 s并暴露于10 ms的短时间电脉冲中,对包含30-38 at。%Cu的非晶态快速淬火的准二元TiNi-TiCu合金进行晶化处理退火速率对其性能的影响。所得结果表明,由于几乎完全阻碍了脆性Ti-Cu相的形成,电脉冲结晶从根本上改变了合金的微观结构。这导致马氏体相变的焓显着增加,并且相变范围向更高的温度显着转移。发现减少结晶时间显着增加了合金的可塑性和形状记忆效果。 (C)2019 Elsevier B.V.保留所有权利。

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