首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of the precipitates on the thermodynamics of the martensitic transformations in Ti-rich Ni-Ti-Co thin films
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Effect of the precipitates on the thermodynamics of the martensitic transformations in Ti-rich Ni-Ti-Co thin films

机译:沉淀物对富含Ti-Ti-Co薄膜马氏体转化热力学的影响

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摘要

The wide-spread multiple transformation in Ti-rich Ni-Ti shape memory alloys produced by Ti2Ni nanoprecipitates was investigated. For this purpose, a series of amorphous Ti-Ni-Co thin films with the same composition were subjected to different annealing treatments. The characteristic temperatures and heat of the transformations were measured by four-point probe resistivity and differential scanning calorimetry. A critical review of the thermodynamics of thermally-induced thermoelastic martensitic transformations is presented. The values of the frictional work and the stored elastic energy associated with the thermoelastic transformations were assessed from the transformation temperatures, and related with the transformation heats measured in the samples annealed at different temperatures. It was observed that the stored elastic energy decreases as the annealing temperature rises due to a change in the distribution of the Ti2Ni precipitates, in concordance with an increase of the transformation heat measured by the calorimeter. Nevertheless, the values of the frictional work were independent of the annealing temperature. The influence of the dissipation of the stored elastic energy on the transformation temperatures and thermal hysteresis is discussed. Finally, a better understanding of the widespread multiple transformation, as an effect of the local stresses introduced by Ti2Ni nano-precipitates in the matrix, is proposed. (C) 2019 Elsevier B.V. All rights reserved.
机译:研究了Ti2Ni纳米沉淀物产生的Ti富含Ti的Ni-Ti形状记忆合金中的宽多种转化。为此目的,对具有相同组成的一系列非晶Ti-Ni-Co薄膜进行不同的退火处理。通过四点探针电阻率和差示扫描量热法测量变换的特征温度和热量。提出了对热诱导热弹性马氏体转化的热力学的关键综述。从转化温度评估摩擦工作的值和与热弹性变换相关的存储弹性能,并与在不同温度下退火的样品中测量的转化热量相关。观察到,由于通过通过量热计测量的转化热量,所储存的弹性能量随着退火温度升高而导致的退火温度升高,随着Ti2Ni沉淀物的分布而增加。然而,摩擦工作的值与退火温度无关。讨论了储存弹性能量对转化温度和热滞后的影响。最后,提出了更好地理解普遍的多种转化,作为由基质中的Ti2Ni纳米沉淀物引入的局部应力的效果。 (c)2019 Elsevier B.v.保留所有权利。

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