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Cooling rate effects on the structure and transformation behavior of Cu-Zn-Al shape memory alloys

机译:冷却速率对Cu-Zn-Al形状记忆合金组织和相变行为的影响

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摘要

Different fragments of a hot-rolled and homogenized Cu-Zn-Al shape memory alloy (SMA) were subjected to thermal cycling by means of a differential scanning calorimetric (DSC) device. During thermal cycling, heating was performed at the same constant rate of increasing temperature while cooling was carried out at different rates of decreasing temperature. For each cooling rate, the temperature decreased in the same thermal interval. During each cooling stage, an exothermic peak (maximum) was observed on the DSC thermogram. This peak was associated with forward martensitic transformation. The DSC thermograms were analyzed with PROTEUS software: the critical martensitic transformation start (Ms) and finish (Mf) temperatures were determined by means of integral and tangent methods, and the dissipated heat was evaluated by the area between the corresponding maximum plot and a sigmoid baseline. The effects of the increase in cooling rate, assessed from a calorimetric viewpoint, consisted in the augmentation of the exothermic peak and the delay of direct martensitic transformation. The latter had the tendency to move to lower critical transformation temperatures. The martensite plates changed in morphology by becoming more oriented and by an augmenting in surface relief, which corresponded with the increase in cooling rate as observed by scanning electron microscopy (SEM) and atomic force microscopy (AFM).
机译:通过差示扫描量热(DSC)装置对热轧且均质化的Cu-Zn-Al形状记忆合金(SMA)的不同片段进行热循环。在热循环期间,以相同的恒定升温速率进行加热,同时以不同的降低速率进行冷却。对于每个冷却速率,温度以相同的热间隔降低。在每个冷却阶段,在DSC热分析图中观察到一个放热峰(最大值)。该峰与正向马氏体转变有关。用PROTEUS软件分析DSC热分析图:通过积分和切线法确定临界马氏体转变开始(Ms)和结束(Mf)温度,并通过相应的最大曲线与S形曲线之间的面积评估散热量基线。从量热学角度评估,冷却速率增加的影响在于放热峰的增加和直接马氏体转变的延迟。后者趋向于降低临界转变温度。马氏体板通过变得更定向和通过增加表面起伏而改变了形态,这与通过扫描电子显微镜(SEM)和原子力显微镜(AFM)观察到的冷却速率的增加相对应。

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