首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The effect of the processing parameters on the martensitic transformation of Cu-Al-Mn shape memory alloy
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The effect of the processing parameters on the martensitic transformation of Cu-Al-Mn shape memory alloy

机译:加工参数对Cu-Al-Mn形状记忆合金马氏体变换的影响

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摘要

The influence of processing, heat-treatment and aging of Cu-(8-9) wt% Al-(7-10) wt% Mn alloy on the kinetics and temperatures of martensitic transformation was investigated by calorimetric measurements. Cu-Al-Mn alloy was prepared by continuous casting, melt-spinner and by melting in the electric arc furnace. Alloys were further heat-treated at 900 degrees C for 30 min and quenched in water, as well as aged at 300 degrees C for 1 h. Differential Scanning Calorimetry (DSC) was performed at 3 heating/cooling cycles from -50 to 250 degrees C. Non-isothermal measurements were determined at five different heating/cooling rates: 5, 10, 15, 20 and 25 degrees C/min. Activation energy was obtained according to Ozawa and Kissinger kinetic models. Microstructure analysis of investigated systems was performed by scanning electron microscopy (SEM). Results indicate the most intensive formation of martensitic structure in the as-cast state during continuous casting, where the partially formation of needle-like and V-shape martensite was observed. After solution treatment and quenching as well as aging, completely martensitic phase occurred in continuously cast alloy. XRD analysis detected Cu2AlMn, Cu3Al and Al4Cu9 phases in quenched specimens of continuously cast Cu-Al-Mn alloy and ribbon. The highest impact of the solution treatment and aging on the shifting of the martensitic temperatures was observed for Cu-Al-Mn ribbons, while in continuously cast Cu-Al-Mn alloy heat treatment and aging induced formation of different martensitic crystal structures. Kinetic investigations showed increasing start martensitic temperatures, M-s, and wider temperature interval of martensitic transformation with higher cooling rate. The highest values of activation energy of martensitic transformation was obtained for the continuously cast Cu-AlMn alloy. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过量热测量研究了Cu-(8-9)Wt%Al-(7-10)Wt%Al-(7-10)重量%Mn合金对动力学和马氏体转化的动力学和温度的影响。 Cu-Al-Mn合金通过连续浇铸,熔化 - 旋转器和在电弧炉中熔化来制备。将合金在900℃下进一步热处理30分钟并在水中淬灭,如300℃的1小时。在-50至250摄氏度的3个加热/冷却循环中以3加热/冷却循环进行差分扫描量热法。在五种不同的加热/冷却速率下测定非等温测量:5,10,15,20和25摄氏度。根据乌扎和基辛格动力学模型获得激活能量。通过扫描电子显微镜(SEM)进行研究的微观结构分析。结果表明连续铸造期间在铸造状态下的马氏体结构最强烈地形成,其中观察到针状和V形马氏体的部分形成。在溶液处理和淬火以及老化后,完全马氏体相发生在连续铸造合金中。 XRD分析在连续铸造Cu-Al-Mn合金和带中淬火标本中检测Cu2Almn,Cu3Al和Al4Cu9相。对于Cu-Al-Mn丝带,观察到溶液处理和老化对马氏体温度的移位的最高影响,而连续铸造Cu-Al-Mn合金热处理和老化诱导的不同马氏体结构的形成。动力学研究表明,具有较高冷却速率的Martensitic变换的升高的马氏体温度,M-S和更广泛的温度间隔。为连续铸铜Almn合金获得马氏体转化的最高值。 (c)2018年elestvier b.v.保留所有权利。

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