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首页> 外文期刊>Micro & Nano Letters, IET >Influence of temperature variation rate on calorimetric response during heating and on martensite structure obtained after subsequent cooling of Cu-Zn-Al shape memory alloy
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Influence of temperature variation rate on calorimetric response during heating and on martensite structure obtained after subsequent cooling of Cu-Zn-Al shape memory alloy

机译:温度变化率对加热期间的量热响应以及随后冷却的Cu-Zn-Al形状记忆合金后获得的马氏体结构的影响

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摘要

The calorimetric response of a martensitic Cu-Zn-Al-Fe shape memory alloy (SMA) was evaluated during second heating, up to 453 K, with different rates ranging between 1.67 ?? 10-2 and 1.67 ?? 10-1 K s-1, performed on a differential scanning calorimeter (DSC). Heating rate (HR) variation caused a marked change of the endothermic peak aspect, which was observed on the DSC thermograms recorded during second heating and associated with the martensite reversion to parent phase. The particularities of the DSC thermograms obtained at different HR values were analysed and critical transformation temperatures of martensite reversion were determined by means of integral method. The influence of HR was corroborated with morphological changes of martensite plates. The results prove that there is an obvious relationship between HR values and the morphology of martensite plates, obtained after post-heating holding and cooling. The term of `heating rate memory effect?? was introduced to define the influence of temperature variation rate during heating on the martensitic structure obtained after subsequent cooling.
机译:马氏体Cu-Zn-Al-Fe形状记忆合金(SMA)在第二次加热(最高453 K)期间的量热响应进行了评估,不同速率的变化范围为1.67Ω·s。 10 -2 和1.67 ??在差示扫描量热仪(DSC)上执行10 -1 K s -1 。加热速率(HR)的变化引起了吸热峰形态的显着变化,这是在第二次加热过程中记录的DSC热谱图上观察到的,并且与马氏体回复母相有关。分析了在不同HR值下获得的DSC温谱图的特殊性,并通过积分法确定了马氏体回复的临界转变温度。 HR的影响与马氏体板的形态变化得到了证实。结果证明,HR值与后加热保温冷却后得到的马氏体板的形态之间存在明显的关系。术语“升温速率记忆效应”为了确定加热过程中温度变化率对随后冷却后获得的马氏体组织的影响,引入了“马氏体”。

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